Amr Fahil | Geothermal | Best Researcher Award

Best Researcher Award

                       Amr Fahil
Affiliation Tanta University
Country Egypt
Scopus ID 57219172795
Documents 14
Citations 219
h-index 7
Subject Area Geothermal
Event World Green Energy Awards
ORCID 0000-0003-1259-4267

Amr Fahil
Tanta University, Egypt

Amr Fahil is a researcher affiliated with Tanta University whose scholarly activities contribute to geothermal energy and sustainable energy technologies. His published research demonstrates continuing engagement with environmentally responsible energy solutions, resource optimization, and engineering applications that support clean energy development. His academic record, citation performance, and international research visibility provide a foundation for consideration within the World Green Energy Awards while reflecting measurable scientific productivity and ongoing professional development.[1]

Abstract

Amr Fahil has established a developing academic profile through research focused on geothermal energy, sustainable engineering, and environmentally responsible resource utilization. His publications demonstrate interest in improving renewable energy systems, enhancing engineering efficiency, and supporting scientific knowledge relevant to low-carbon development. With fourteen indexed publications, two hundred nineteen citations, and an h-index of seven, his work has attracted measurable scholarly attention while contributing to international discussions on clean energy innovation. These achievements indicate meaningful research productivity and support consideration for recognition through the World Green Energy Awards based on documented academic performance and research impact.[1]

Keywords

Geothermal Energy, Renewable Energy, Sustainable Engineering, Energy Efficiency, Clean Energy and World Green Energy Awards

Introduction

Geothermal research supports reliable renewable energy production by utilizing naturally occurring thermal resources while reducing dependence on fossil fuels. Researchers working in this discipline contribute to sustainable energy transitions through scientific investigation, engineering innovation, and resource optimization that encourage environmentally responsible development across regional and international energy systems.[2]

Research Profile

Amr Fahil maintains an indexed publication record within Scopus, reflecting participation in peer-reviewed scientific research associated with geothermal and renewable energy topics. His citation statistics and h-index demonstrate growing academic visibility while indicating that his published studies have received recognition from the international research community.[1]

Research Contributions

His research contributions emphasize scientific approaches that improve renewable energy utilization, engineering performance, and environmentally sustainable technologies. Through collaborative investigations and technical analysis, his publications support knowledge development related to geothermal systems while encouraging practical applications that align with long-term clean energy objectives.[3]

Publications

The available publication record includes fourteen indexed documents distributed across recognized scientific outlets. These publications demonstrate continuing scholarly engagement and provide evidence of research dissemination within internationally indexed literature, supporting transparency, reproducibility, and academic communication in renewable energy research.[1]

Research Impact

Citation indicators suggest that Amr Fahil’s research has attracted measurable scholarly attention from researchers working in related scientific disciplines. Such bibliometric evidence reflects academic influence while demonstrating that published findings have contributed to ongoing investigations involving renewable energy technologies and sustainable engineering practices.[3]

Award Suitability

Based on documented publication metrics, citation performance, and research specialization in geothermal energy, Amr Fahil demonstrates characteristics consistent with academic recognition within the World Green Energy Awards. Evaluation should remain based upon peer-reviewed achievements, scientific quality, documented impact, and continued contributions to renewable energy research.[4]

Conclusion

The available academic evidence indicates consistent scholarly activity within geothermal research and renewable energy engineering. His publication record, measurable citation impact, and continuing scientific engagement provide a credible basis for professional recognition while illustrating contributions to sustainable energy research and international academic collaboration.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Amr Fahil, Author ID 57219172795. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57219172795&eid=2-s2.0-85091572829
  2. Shebl, A., Abriha, D., Fahil, A. S., El-Dokouny, H. A., Elrasheed, A. A., & Csámer, Á. (2023). PRISMA hyperspectral data for lithological mapping in the Egyptian Eastern Desert: Evaluating the support vector machine, random forest, and XG boost machine learning algorithms. Ore Geology Reviews, 161, 105652. https://doi.org/10.1016/j.oregeorev.2023.105652
  3. Shebl, A., Abdellatif, M., Badawi, M., Dawoud, M., Fahil, A. S., & Csámer, Á. (2023). Towards better delineation of hydrothermal alterations via multi-sensor remote sensing and airborne geophysical data. Scientific Reports, 13, Article 7406.
    https://doi.org/10.1038/s41598-023-34657-5
  4. Ghoneim, E., Healey, C., Hemida, M., Shebl, A., & Fahil, A. (2023). Integration of geophysical and geospatial techniques to evaluate geothermal energy at Siwa Oasis, Western Desert, Egypt. Remote Sensing, 15(21), 5094.
    https://doi.org/10.3390/rs15215094
  5. Eid, M. H., Shebl, A., Eissa, M., Mohamed, E. A., Fahil, A. S., Ramadan, H. S., Abukhadra, M. R., El-Sherbeeny, A. M., Kovács, A., & Szűcs, P. (2024). Comprehensive approach integrating remote sensing, machine learning, and physicochemical parameters to detect hydrodynamic conditions and groundwater quality deterioration in non-rechargeable aquifer systems. Heliyon, 10(12), e32992. https://doi.org/10.1016/j.heliyon.2024.e32992

Ahmed Mourtada Elseman | Solar cells | Editorial Board Member

Editorial Board Member

Ahmed Mourtada Elseman
Affiliation Central Metallurgical Research and Development Institute
Country Egypt
Scopus ID 57204682216
Documents 91
Citations 2,730
h-index 30
Subject Area Solar Cells
Event World Green Energy Awards
ORCID 0000-0001-9297-9866

Ahmed Mourtada Elseman
Central Metallurgical Research and Development Institute, Egypt

Ahmed Mourtada Elseman is a researcher affiliated with the Central Metallurgical Research and Development Institute in Egypt whose scholarly activities focus on solar cell technologies and advanced photovoltaic materials. His publication record, citation profile, and editorial involvement indicate sustained participation in renewable energy research and scientific communication.[1]

Abstract

Ahmed Mourtada Elseman has contributed to research concerning photovoltaic materials, solar cells, and renewable energy technologies through peer-reviewed publications and editorial activities. His academic profile demonstrates consistent scholarly productivity, supported by an established citation record and international research visibility. As an editorial board member, he participates in maintaining publication quality through scientific evaluation and peer-review processes. His documented research metrics, institutional affiliation, and professional identifiers collectively illustrate an active academic career within materials science and sustainable energy research while supporting scientific collaboration, knowledge dissemination, and continued advancement across photovoltaic research communities.[1]

Keywords

Solar cells, photovoltaics, renewable energy, materials science, editorial board member, Scopus, scientific publishing, peer review, Egypt, sustainable energy.

Introduction

Scientific editorial board members contribute to publication quality by supporting peer review, maintaining ethical standards, and encouraging dissemination of reliable research. Ahmed Mourtada Elseman participates in these responsibilities while continuing active investigations in photovoltaic materials and renewable energy technologies.[1]

Research Profile

His documented Scopus profile lists ninety-one indexed publications with more than two thousand seven hundred citations and an h-index of thirty. These bibliometric indicators reflect sustained scholarly activity in solar cell research and related materials science disciplines.[1]

Research Contributions

Research contributions include investigations of photovoltaic materials, perovskite solar cells, device optimization, and energy conversion efficiency. Published studies have explored material synthesis, characterization methods, and performance evaluation using recognized scientific methodologies suitable for renewable energy applications.[4]

Publications

The publication portfolio consists of peer-reviewed journal articles indexed by Scopus and supported by persistent digital object identifiers where available. These publications collectively document ongoing research development and collaboration within international scientific communities investigating advanced photovoltaic technologies.[2]

Research Impact

Citation statistics indicate that published studies have been referenced by researchers working across renewable energy and materials science disciplines. Bibliometric measures provide quantitative evidence of scholarly visibility while complementing qualitative assessments of scientific significance and continuing academic engagement.[1]

Award Suitability

Available academic metrics, publication history, editorial participation, and sustained research activity indicate qualifications that may be considered during evaluations associated with the World Green Energy Awards. Final recognition decisions remain subject to the award organization’s independent eligibility requirements and assessment procedures.[3]

Conclusion

Ahmed Mourtada Elseman’s academic profile demonstrates continued engagement in photovoltaic research, scientific publishing, and editorial service. His documented scholarly record, citation performance, and institutional affiliation collectively represent an established contribution to renewable energy research within internationally indexed scientific literature.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Ahmed Mourtada Elseman, Author ID 57204682216. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57204682216
  2. Husaini, M. N. A. H. M., Ahmad, A. D., Masruroh, Fouad, O. A., Elseman, A. M., Geioushy, R. A., & Harun, S. W. (2025). Copper aluminum oxide for enabling Q-switching and mode-locking in erbium-doped fiber lasers. Optik, 339, 172545. https://doi.org/10.1016/j.ijleo.2025.172545
  3. World Green Energy Awards. Official Award Website.
    https://greenenergyaward.com/
  4. Salem, R., Khalil, M. M. H., Rashad, M. M., & Elseman, A. M. (2025). Enhanced charge transport in perovskite solar cells using WO₃ and BaWO₄ nanoparticles as alternative electron transport layers. Emergent Materials, 8, 7791–7803.
    https://doi.org/10.1007/s42247-025-01207-4
  5. El-Gaby, M. S. A., El-Adasy, A. A. A. M., Rashad, M. M., Fadl, A. M. M., Elsenety, M. M., & Elseman, A. M. (2025). Molecular engineering of multifunctional benzothiazole-sulfonamide hybrids: From synthesis to optoelectronic applications. Photochemical & Photobiological Sciences, 24(12), 1991–2004.
    https://doi.org/10.1007/s43630-025-00786-9

Abdelaal S.A. Ahmed | Solarcells | Editorial Board Member

Editorial Board Member

                 Abdelaal S.A. Ahmed
Affiliation Al-Azhar University
Country Egypt
Scopus ID 57202904827
Documents 40
Citations 947
h-index 19
Subject Area Solar Cells
Event World Green Energy Awards
ORCID 0000-0003-1633-2694

Abdelaal S.A. Ahmed is affiliated with Al-Azhar University and has established a documented research profile in photovoltaic technologies, semiconductor materials, and solar energy applications. His scholarly publications, citation record, and editorial activities demonstrate sustained participation in academic communication and scientific publishing within renewable energy disciplines.[1]

Abstract

This article summarizes the academic profile of Abdelaal S.A. Ahmed as a researcher and editorial board member within renewable energy sciences. His work emphasizes photovoltaic devices, semiconductor materials, and solar cell technologies through peer-reviewed publications, scholarly collaboration, and editorial service. Bibliometric indicators recorded through Scopus demonstrate measurable research influence, while participation in scientific publishing reflects commitment to maintaining publication quality and research integrity. These characteristics collectively provide objective evidence supporting scholarly recognition associated with international academic initiatives, including consideration for professional distinctions such as the World Green Energy Awards.[1][2]

Keywords

Solar cells, photovoltaics, semiconductor materials, renewable energy, editorial board member, scholarly publishing, Scopus, research impact, sustainable technology, Al-Azhar University.

Introduction

Research in solar energy continues to support technological innovation and sustainable development worldwide. Scientists working in photovoltaic engineering contribute to improved energy conversion efficiency, advanced materials, and environmentally responsible power generation through peer-reviewed investigations and interdisciplinary collaboration.[2]

Research Profile

Abdelaal S.A. Ahmed has authored forty indexed publications and accumulated substantial citation metrics with an h-index of nineteen according to Scopus. His research portfolio primarily addresses photovoltaic devices, semiconductor characterization, and practical applications supporting renewable energy technologies.[1]

Research Contributions

His published investigations contribute to understanding material performance, device optimization, and energy conversion processes relevant to solar cell development. Editorial participation additionally supports scientific quality assurance through manuscript evaluation, academic communication, and dissemination of validated research findings.[3]

Publications

The publication record includes articles indexed in international databases covering photovoltaic materials, semiconductor engineering, and renewable energy technologies. These contributions collectively demonstrate sustained scholarly productivity and participation in internationally recognized scientific literature.[1]

Research Impact

Citation indicators suggest that the published work has been referenced by subsequent studies within related scientific disciplines. Such bibliometric evidence reflects visibility in academic literature and indicates continuing relevance of the research to renewable energy investigations.[1]

Award Suitability

Available bibliometric information, publication history, editorial responsibilities, and research specialization provide objective criteria that may support consideration for professional recognition associated with renewable energy awards. Final eligibility and selection remain exclusively subject to the official evaluation procedures established by the award organizers.[4]

Conclusion

The documented scholarly record illustrates sustained engagement in renewable energy research, scientific publishing, and editorial service. Together with measurable citation performance and publication activity, these indicators describe an established academic profile within the field of solar cell research.[1]

References

      1. Elsevier. (n.d.). Scopus author details: Abdelaal S.A. Ahmed, Author ID 57202904827. Scopus.
        https://www.scopus.com/authid/detail.uri?authorId=57202904827
      2. World Green Energy Awards. Official award information.
        https://greenenergyaward.com/
      3. Bouafia, A., Laouini, S. E., Ahmed, A. S. A., Soldatov, A. V., Algarni, H., Chong, K. F., & Ali, G. A. M. (2021). The recent progress on silver nanoparticles: Synthesis and electronic applications. Nanomaterials, 11(9), 2318.
        https://doi.org/10.3390/nano11092318
      4. Abodif, A. M., Meng, L., Sanjrani, M. A., Ahmed, A. S. A., Belvett, N., Wei, Z. Z., & Ning, D. (2020). Mechanisms and models of adsorption: TiO₂-supported biochar for removal of 3,4-dimethylaniline. ACS Omega, 5(23), 13630–13640.
        https://doi.org/10.1021/acsomega.0c00619

Ahmed Nabih Zaki Rashed | Energy Storage | Best Researcher Award

Best Researcher Award

           Ahmed Nabih Zaki Rashed
Researcher Ahmed Nabih Zaki Rashed
Affiliation Menoufiya University
Country Egypt
Scopus ID 36118361900
Documents 403
Citations 13,378
h-index 65
Subject Area Energy Storage
Event World Green Energy Awards
ORCID 0000-0002-5338-1623

Ahmed Nabih Zaki Rashed of Menoufiya University, Egypt, is an academic researcher whose scholarly record demonstrates sustained productivity and measurable influence within the broader field of energy-related technologies and associated engineering disciplines. According to available bibliometric indicators, the researcher has authored 403 indexed publications that have collectively received 13,378 citations and achieved an h-index of 65, reflecting substantial visibility and citation impact within the scientific community.[1]

Abstract

This article presents an academic assessment of Ahmed Nabih Zaki Rashed in relation to consideration for the Best Researcher Award at the World Green Energy Awards. The evaluation is based on publicly available bibliometric indicators, publication productivity, citation performance, scholarly influence, and relevance to energy-related research activities. With 403 indexed documents, 13,378 citations, and an h-index of 65, the researcher demonstrates sustained scientific output and recognized academic visibility. These indicators suggest a significant contribution to research advancement and knowledge dissemination, supporting consideration for professional recognition within an international academic and scientific framework.[1]

Keywords

Ahmed Nabih Zaki Rashed; Energy Storage; Bibliometric Assessment; Research Impact; Scientific Productivity; Citation Analysis; h-index; Academic Excellence; Research Recognition; World Green Energy Awards.

Introduction

Academic recognition awards frequently evaluate candidates through a combination of research productivity, citation influence, scholarly visibility, and contribution to scientific advancement. Bibliometric indicators provide a standardized mechanism for assessing research performance across institutions and disciplines. In this context, Ahmed Nabih Zaki Rashed has established a substantial publication portfolio supported by extensive citation activity and a high h-index, indicating that a significant number of publications have achieved notable scholarly attention within the international research community.[1]

Research Profile

The research profile of Ahmed Nabih Zaki Rashed is characterized by sustained publication activity and broad scholarly engagement. Available bibliometric records indicate 403 indexed documents and 13,378 citations, resulting in an h-index of 65. These indicators suggest both long-term productivity and measurable research influence, demonstrating that numerous publications have been cited repeatedly by subsequent studies and have contributed to ongoing scientific discourse.[1]

Research Contributions

Research contributions associated with Ahmed Nabih Zaki Rashed have supported knowledge development in energy-related technologies and engineering applications. The volume of published work and the resulting citation record indicate continued engagement with topics of scientific and technological relevance. Through peer-reviewed dissemination, the researcher has participated in the advancement of academic understanding and has contributed to the accumulation of evidence that supports innovation and further investigation within related research domains.[1][2]

Publications

The publication portfolio includes a substantial body of scholarly literature indexed in major academic databases. A publication count exceeding four hundred documents reflects continuous participation in scientific communication and peer-reviewed dissemination. Such productivity is frequently regarded as evidence of long-term research engagement and sustained contribution to the scholarly record, particularly when accompanied by strong citation performance and consistent academic visibility.[1]

Research Impact

Research impact may be evaluated through citation metrics, influence on subsequent investigations, and integration into the broader scientific literature. The citation total of 13,378 and h-index of 65 indicate that the researcher’s publications have achieved substantial scholarly recognition. These metrics suggest enduring academic relevance and demonstrate that multiple studies have contributed meaningfully to scientific discussions, thereby strengthening the researcher’s overall impact profile.[1][3]

Award Suitability

Assessment for the Best Researcher Award commonly considers productivity, impact, visibility, and contribution to scientific advancement. Based on the available bibliometric evidence, Ahmed Nabih Zaki Rashed demonstrates a combination of extensive publication output, strong citation performance, and recognized scholarly influence. These characteristics align with widely accepted criteria used by academic award committees when evaluating candidates for distinguished research recognition within international scientific forums.[1][4]

Conclusion

Ahmed Nabih Zaki Rashed presents a research profile characterized by extensive publication activity, substantial citation influence, and a strong h-index. Collectively, these indicators demonstrate measurable academic impact and sustained engagement in scholarly research. Based on available evidence, the researcher represents a credible candidate for consideration in professional recognition programs such as the Best Researcher Award presented within the framework of the World Green Energy Awards.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ahmed Nabih Zaki Rashed, Author ID 36118361900. Scopus.
    https://www.scopus.com/authid/detail.uri?origin=resultslist&authorId=36118361900&zone=
  2. ORCID. (n.d.). ORCID profile: Ahmed Nabih Zaki Rashed, ORCID iD 0000-0002-5338-1623. ORCID Registry.
    https://orcid.org/0000-0002-5338-1623
  3. World Green Energy Awards. (n.d.). Award evaluation and recognition framework.
    https://greenenergyaward.com/
  4. Megalan Leo, L., Mohanadoss, P., Selvam, A. K., Balamurugan, K., Gunasekaran, R., Divya, N., Kumar, C. R., Ferdous, A. H. M. I., & Rashed, A. N. Z. (2024). High modulation depth and high modulated power with low noise figure for high speed modulation optical communication system performance signature. Journal of Optics, 55(4), 175–185.
    https://doi.org/10.1007/s12596-024-02104-5
  5. Lingaraj, V., Neelamegam, N., Selvaraju, M., Prahalathan, G., Narayanan, D. B., Anvar, J., Ramkumar, G., Rashed, A. N. Z., & Ferdous, A. H. M. I. (2024). Different conventional commercial glass optical fibers composites physical parameters performance signature in short range optical transceiver systems. Journal of Optics, 55, 1612–1622.
    https://doi.org/10.1007/s12596-024-02197-y

Ana Maria Gagneten | Nanoecotoxicology | Innovative Research Award

Innovative Research Award

Ana Maria Gagneten
Universidad Nacional del Litoral

Ana Maria Gagneten
Affiliation Universidad Nacional del Litoral
Country Argentina
Scopus ID 6603156869
Documents 69
Citations 1,107
h-index 18
Subject Area Nanoecotoxicology
Event World Green Energy Awards
ORCID 0000-0001-6402-2389

The Innovative Research Award nomination profile recognizes the scholarly achievements and research contributions of Ana Maria Gagneten, a researcher affiliated with Universidad Nacional del Litoral, Argentina. Her academic work has contributed to the advancement of environmental sciences and nanoecotoxicology through interdisciplinary investigations addressing ecological risk assessment, aquatic ecosystem monitoring, and the environmental implications of emerging contaminants. Bibliometric indicators associated with her scholarly record demonstrate sustained research productivity and international scientific visibility.[1]

Abstract

 Ana Maria Gagneten in the context of consideration for the Innovative Research Award at the World Green Energy Awards. The profile highlights research productivity, citation performance, interdisciplinary scientific engagement, and contributions to environmental sustainability research. Particular attention is given to scholarly outputs related to nanoecotoxicology and aquatic ecosystem assessment, areas that align with contemporary environmental and sustainability priorities.[1][2]

Keywords

Nanoecotoxicology; Environmental Monitoring; Aquatic Ecosystems; Ecological Risk Assessment; Sustainability Science; Environmental Toxicology; Research Impact; Scientific Innovation.

Introduction

Environmental sustainability challenges increasingly require evidence-based scientific approaches capable of integrating ecological, technological, and policy perspectives. Researchers working at the intersection of environmental monitoring and emerging contaminants play a critical role in generating knowledge relevant to ecosystem protection and sustainable development. Ana Maria Gagneten’s scholarly record reflects engagement with these objectives through investigations focused on ecological quality assessment and environmental toxicology.[1][3]

Research Profile

Ana Maria Gagneten of Universidad Nacional del Litoral, Argentina, has established a mature and well-recognized research portfolio in the field of Nanoecotoxicology. According to available bibliometric indicators, her scholarly output comprises 69 published documents, which have collectively received 1,107 citations, resulting in an h-index of 18. These metrics reflect sustained research productivity and a measurable academic impact, indicating that multiple publications have gained recognition within the scientific community.[3]

Research Contributions

Ana Maria Gagneten’s research activities have focused on understanding the interactions between environmental stressors and biological systems. Her work has contributed to ecological monitoring frameworks, assessment of contaminant impacts, and the development of methodologies supporting environmental management and conservation initiatives.[2]

Publications

The researcher has produced 69 indexed scholarly documents across environmental science and related interdisciplinary fields. These publications collectively contribute to scientific understanding of environmental quality assessment, ecological risk evaluation, and emerging environmental challenges. The publication record reflects sustained engagement with peer-reviewed research dissemination and international scientific communication.[1]

Research Impact

Research impact can be evaluated using bibliometric indicators and evidence of scholarly influence. With more than one thousand citations and an h-index of 18, the available metrics suggest that Ana Maria Gagneten’s publications have been referenced by subsequent studies, reflecting continued relevance within environmental research literature.[1]. Such contributions are relevant to the broader objectives of sustainable development and environmental stewardship.

Award Suitability

Based on publicly available scholarly indicators, Ana Maria Gagneten demonstrates characteristics commonly associated with candidates considered for academic recognition programs. These include sustained research productivity, measurable citation impact, interdisciplinary engagement, and contributions to environmentally relevant scientific fields. The alignment of her research interests with sustainability and environmental protection themes makes her profile relevant to the objectives of the World Green Energy Awards and similar international recognition initiatives.[1][4]

Conclusion

Ana Maria Gagneten has established a documented academic profile within the field of nanoecotoxicology and environmental sciences. Through scholarly publications, citation impact, and contributions to ecological research, she has participated in advancing scientific understanding of environmental sustainability issues. The available evidence supports recognition of her academic achievements within the context of research excellence and innovation-oriented award programs.[1]

References

1. Elsevier. (n.d.). Scopus author details: Ana Maria Gagneten, Author ID 6603156869. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=6603156869

2. ORCID. (n.d.). Ana Maria Gagneten Research Profile.
https://orcid.org/0000-0001-6402-2389

3. World Green Energy Awards. (n.d.).
https://greenenergyaward.com/

4. Carvalho, W. A., Urzedo, A. L., Romero, N., Regaldo, L., Machado, L. F. L., & Gagneten, A. M. (2026). Sustainable fertilization with iron-enriched montmorillonite and sanitary sludge enhances germination and growth of Zea mays L. Resources, 15(5), 67.
https://doi.org/10.3390/resources15050067

5. Huaman, W. R., Rivera, M., Reno, U., Schmuck, J., Regaldo, L., Farias, K. H., Zamora, J., Gagneten, A. M., & Champi, A. (2026). Role of conductivity in the ecotoxicological effects of lyophilized graphene oxides on Lactuca sativa and Allium cepa. ACS Omega.
https://doi.org/10.1021/acsomega.5c13552

 

Ahmed Nabih Zaki Rashed | Renewable Energy Systems | Best Researcher Award

Best Researcher Award

Ahmed Nabih Zaki Rashed
Affiliation Menoufiya University
Country Egypt
Scopus ID 36118361900
Documents 403
Citations 13,362
h-index 65
Subject Area Renewable Energy Systems
Event World Green Energy Awards
ORCID 0000-0002-5338-1623

Ahmed Nabih Zaki Rashed – Menoufiya University

Ahmed Nabih Zaki Rashed is a researcher affiliated with Menoufiya University, Egypt, whose academic contributions span optical communications, photonic systems, renewable energy technologies, and advanced communication networks. His scholarly profile demonstrates sustained research productivity, extensive publication activity, and measurable citation impact within international scientific communities.[1]

Abstract

This article presents an academic overview of Ahmed Nabih Zaki Rashed in consideration for the Best Researcher Award presented at the World Green Energy Awards. The profile highlights research productivity, publication records, citation performance, interdisciplinary engagement, and contributions to renewable energy and communication technologies. The assessment is based on publicly available scholarly indicators and documented research outputs.[1]

Keywords

Renewable Energy Systems, Optical Communications, Photonic Networks, Solar Cell Technologies, Communication Engineering, Research Excellence, Scientific Publications, Academic Impact, Energy Innovation, Green Technology Research.

Introduction

Research excellence is frequently evaluated through publication quality, scholarly influence, and sustained scientific engagement. Ahmed Nabih Zaki Rashed has established a visible presence across engineering and energy-related disciplines through extensive collaborative research and international journal publications. His work reflects a combination of theoretical investigation and practical technological applications in emerging scientific domains.[2]

Research Profile

As a faculty member of Menoufiya University, Ahmed Nabih Zaki Rashed has developed an extensive research portfolio covering optical networks, wireless communication systems, photonic devices, sensing technologies, and renewable energy applications. His scholarly profile includes hundreds of indexed publications and significant citation accumulation, indicating broad engagement with the international research community.[1]

Research Contributions

The research contributions of Ahmed Nabih Zaki Rashed include studies on solar cell optimization, photonic crystal fiber sensors, optical communication performance enhancement, terahertz sensing technologies, and advanced communication architectures. Several investigations integrate energy efficiency and high-performance system design, supporting developments relevant to sustainable engineering and renewable energy research.[3]

Publications

Ahmed Nabih Zaki Rashed has contributed to a substantial body of scholarly literature across journals focusing on optics, communication systems, photovoltaics, sensing technologies, and advanced materials. His publications demonstrate active collaboration with international researchers and reflect continuing engagement with emerging scientific topics related to energy systems, optical engineering, and applied technology development.[4]

Research Impact

Research impact can be measured through citation performance, publication visibility, peer recognition, and participation in scholarly review activities. With more than thirteen thousand citations and an h-index of sixty-five, the available indicators suggest that Ahmed Nabih Zaki Rashed’s work has achieved substantial academic visibility and influence across multiple research communities.[1]

Award Suitability

The candidate’s publication record, citation metrics, interdisciplinary research scope, and continuing scientific contributions support consideration for the Best Researcher Award. His work aligns with themes of technological innovation, sustainable engineering, and knowledge advancement, making the profile relevant to recognition within the World Green Energy Awards framework.[5]

Conclusion

Ahmed Nabih Zaki Rashed represents a research profile characterized by productivity, international collaboration, and measurable scholarly influence. His contributions across communication engineering, photonics, sensing technologies, and renewable energy systems provide a strong academic foundation for recognition through a distinguished researcher award program.

References

  1. ORCID. (2026). Ahmed Nabih Zaki Rashed (ORCID: 0000-0002-5338-1623).
    https://orcid.org/0000-0002-5338-1623
  2. Rashed, A. N. Z., et al. (2025). Analysis of Dual Material Gate InSb/Si Heterojunction Silicon on Insulator Tunnel Field Effect Transistor Biosensor for CREB-2 Protein Detection. Sensing and Imaging.
    https://doi.org/10.1007/S11220-025-00558-W
  3. Hasan, M. G., Islam, M. A., Ferdous, A. H. M. I., Noor, K. S., Islam, M. S., Sadeque, M. G., & Rashed, A. N. Z. (2025). Environmental monitoring with sensitive photonic fiber sensors for hazardous chemicals. International Communications in Heat and Mass Transfer.
    https://doi.org/10.1016/J.ICHEATMASSTRANSFER.2025.108631
  4. Kundu, D., Roy, S., Mustak, R., Eid, M. M. A., Rashed, A. N. Z., et al. (2025). Feasibility of Halide Perovskite Material-Based Hybrid Surface Plasmon Resonance Biosensor for Formalin Detection. Plasmonics.
    https://doi.org/10.1007/S11468-024-02411-4
  5. Harun-Or-Rashid, M., Hasan, K. M., Islam, K. M., Onkon, M. N. C., Zishan, A. S., Elhadi, M., Jany, M. R., Rashed, A. N. Z., & Islam, M. M. (2025). Unveiling the Potential of GaPbI3 Perovskite: Structural, Mechanical, and Optoelectronic Insights for Next-Generation Solar Cells. Materials Today Communications.
    https://doi.org/10.1016/j.mtcomm.2025.111490

Amira Haddouk | Wireless Power Transfer | Best Academic Researcher Award

Best Academic Researcher Award

Amira Haddouk
University of Tunis, Tunisia

Amira Haddouk
Affiliation University of Tunis
Country Tunisia
Scopus ID 18634101800
Documents 14
Citations 37
h-index 4
Subject Area Wireless Power Transfer
Event World Green Energy Awards
ORCID 0000-0001-5940-7735

Amira Haddouk is an Associate Professor in Electrical Engineering at the University of Tunis whose work focuses on smart sensors, embedded systems, energy measurement technologies, and wireless power transfer applications. Her academic activities combine industrial instrumentation, intelligent monitoring systems, and renewable energy technologies. Through publications, conference contributions, and engineering research, she has developed practical solutions supporting efficient energy management and advanced sensing systems.[1]

Abstract

This article presents an overview of the academic profile of Amira Haddouk and highlights her contributions to electrical engineering, smart sensing technologies, and wireless energy transfer systems. Her work demonstrates an interdisciplinary approach integrating measurement science, embedded electronics, and renewable energy applications. These achievements provide a foundation for consideration within academic recognition programs and research excellence initiatives.[2]

Keywords

Wireless Power Transfer, Smart Sensors, Embedded Systems, Energy Measurement, Renewable Energy, Industrial Instrumentation, Electrical Engineering, Intelligent Monitoring Systems.

Introduction

Research in modern electrical engineering increasingly requires integration between sensing technologies, communication systems, and energy-efficient design. Amira Haddouk has contributed to these areas through studies addressing intelligent energy monitoring, smart metering platforms, and advanced measurement methodologies. Her scholarly activities reflect a commitment to practical engineering solutions supported by scientific investigation and experimental validation.[3]

Research Profile

As an Associate Professor, Haddouk has developed expertise in smart sensors, embedded platforms, electrical measurement systems, and energy management technologies. Her academic background includes doctoral research in electrical engineering and continued work in renewable energy applications. Current investigations include wireless power transfer systems capable of supporting sensor networks operating in inaccessible environments.[1]

Research Contributions

Her contributions include the development of smart energy meters, greenhouse monitoring systems, thermal energy management models, and power measurement techniques. These studies have addressed both theoretical and practical challenges associated with energy efficiency and intelligent control. The research outcomes support sustainable engineering practices and demonstrate relevance to industrial and environmental applications.[4]

Publications

Amira Haddouk has authored and co-authored publications covering wireless power transfer, smart energy metering, intelligent greenhouse control, electrical measurement systems, and sustainable energy technologies. Her publications appear in peer-reviewed journals and international conference proceedings. The body of work demonstrates continuous engagement with emerging engineering challenges and practical technological innovation.[2]

Research Impact

The measurable research impact includes citations, international collaborations, and scholarly dissemination through recognized publication channels. Her work contributes to the advancement of sustainable energy systems and intelligent instrumentation technologies. By connecting engineering theory with real-world implementation, the research supports academic and industrial communities alike.[5]

Award Suitability

The academic record, research productivity, and specialization in wireless power transfer and intelligent energy systems support consideration for the Best Academic Researcher Award. Her portfolio demonstrates sustained scholarly activity, publication output, and practical engineering relevance. These characteristics align with the objectives commonly associated with international research recognition programs.

Conclusion

Amira Haddouk has established a research profile centered on innovation in electrical engineering, energy monitoring, and wireless power technologies. Her scholarly achievements reflect continuous engagement with contemporary engineering challenges. The combination of academic leadership, publication activity, and applied research strengthens her profile within international research communities.

References

  1. Chebbi, A., Haddouk, A., Monteiro, V., Afonso, J. L., & Mechergui, H. (2025). Design and implementation of a resonant inductive wireless power transfer system powered by a Class D amplifier for smart sensors in inaccessible environments. Electronics, 15(1), Article 33.
    https://doi.org/10.3390/electronics15010033
  2. Haddouk, A., & Mechergui, H. (2024). Wireless energy transfer for powering smart sensors. In Proceedings of the International Conference on Control, Decision and Information Technologies (CoDIT). IEEE.
    https://doi.org/10.1109/CODIT62066.2024.10708446
  3. Haddouk, A., Tanazafti, A., & Mechergui, H. (2023). Development of a smart energy meter for electrical energy consumption and power. In Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering (LNICST). Springer.
    https://doi.org/10.1007/978-3-031-33979-0_7
  4. Haddouk, A., Khlifi, K., Monteiro, V., Afonso, J. L., & Mechergui, H. (2021). Power losses reduction in a variable linear power supply using the LM317 voltage regulator. ISA Transactions, 116, 234–244.
    https://doi.org/10.1016/j.isatra.2020.12.004
  5. Khlifi, K., Haddouk, A., Ayari, A., & Mechergui, H. (2018). Measurement of active power, electrical energy, and TRMS voltage and current using the dual slope conversion technique. Turkish Journal of Electrical Engineering & Computer Sciences, 26(2), 1024–1038.
    https://doi.org/10.3906/ELK-1704-131

John Festus Vandy | Biotechnology | Excellence in Research Award

Excellence in Research Award

John Festus Vandy
Affiliation Institute of Public Administration and Management
Country Sierra Leone
Google Scholar ID aSL0AAAAJ&hl
Documents 21
Citations 31
h-index 4
Subject Area Biotechnology
Event World Green Energy Awards
ORCID 0009-0000-9047-3941

John Festus Vandy is a researcher affiliated with the Institute of Public Administration and Management, Sierra Leone. His scholarly activities focus on sustainability, organizational development, human resource management, and public sector transformation. Through interdisciplinary research and academic publications, he has contributed to discussions surrounding sustainable development goals, green human resource management, and institutional effectiveness.[1]

Abstract

This article evaluates the academic profile of John Festus Vandy in the context of research excellence and sustainability-oriented scholarship. His research activities emphasize green management practices, public administration, organizational performance, and sustainable development. Through peer-reviewed publications and collaborative research, he has demonstrated a commitment to addressing contemporary challenges relevant to developing economies and institutional advancement.[2]

Keywords

Research Excellence, Sustainability, Green Human Resource Management, Public Administration, Organizational Development, SDG Localization, Human Resource Management, Academic Research.

Introduction

Academic excellence is measured through the quality of research outputs, societal relevance, and scholarly engagement. John Festus Vandy has established a growing publication record that explores the relationship between sustainability initiatives and organizational management. His studies frequently address policy implementation, sustainable practices, and strategic management frameworks within developing countries.[3]

Research Profile

The research profile of John Festus Vandy reflects interdisciplinary engagement across sustainability, management sciences, and public sector studies. His scholarly work incorporates comparative analyses, policy evaluation, and green organizational practices. These themes demonstrate a consistent effort to generate evidence-based knowledge that supports sustainable institutional development and improved governance outcomes.[4]

Research Contributions

His research contributions include investigations into green human resource management, circular economy practices, and sustainable development goal localization. These studies examine practical mechanisms that organizations and governments can adopt to improve sustainability performance. The resulting findings contribute to academic discourse while also supporting policy and managerial decision-making.[2]

Publications

John Festus Vandy has authored and co-authored publications addressing SDG localization, circular economy integration, knowledge management, public sector reform, and comparative human resource management. His publication portfolio demonstrates continuous scholarly engagement and highlights research themes that connect sustainability objectives with organizational effectiveness across diverse institutional environments.[1]

Research Impact

The impact of his work is reflected through citations, collaborative publications, and growing international visibility. By focusing on sustainability-related challenges and management innovation, his studies provide valuable insights for academics, policymakers, and practitioners. The integration of environmental and organizational perspectives further enhances the relevance of his research contributions.[2]

Award Suitability

Based on documented publications, research engagement, and sustainability-focused scholarship, John Festus Vandy demonstrates characteristics aligned with recognition through the Excellence in Research Award. His contributions to green management, sustainable development, and organizational studies support the objectives of international research recognition programs and sustainability-oriented academic awards.

Conclusion

John Festus Vandy has developed a research profile characterized by interdisciplinary scholarship and sustainability-oriented inquiry. Through published research and collaborative academic efforts, he has contributed to contemporary discussions on green management and organizational development. His achievements reflect ongoing commitment to academic excellence and meaningful research engagement.

References

  1. Vandy, J. F., Mohanty, S., & Mohapatra, S. (2026). Cultural dimensions and SDG localization in developing countries: A cross-country analysis of India and Sierra Leone. Sustainable Communities.
    https://doi.org/10.1080/29931282.2026.2620146
  2. Vandy, J. F., Mohanty, S., Agrawal, A., & Mohapatra, S. (2026). Contribution of GHRM to Circular Economy in India. Circular Economy and Sustainability.
    https://doi.org/10.1007/s43615-026-00778-6
  3. Vandy, J. F., & Mohanty, S. (2025). Cross-national analysis of GHRM practices in India and Sierra Leone as a catalyst for SDG localization. Discover Sustainability.
    https://doi.org/10.1007/s43621-025-01891-6
  4. Vandy, J. F. (2023). The nexus between knowledge and talent management for future workplace: A critical examination. International Journal of Research in Human Resources Management.
    https://orcid.org/0009-0000-9047-394

Ihor Virt | Thin Films | Outstanding Scientist Award

Outstanding Scientist Award

Ihor Virt
Drohobych State Pedagogical University of Ivan Franko
Ihor Virt
Affiliation Drohobych State Pedagogical University
Country Ukraine
Scopus ID 7004408178
Documents 94
Citations 684
h-index 13
Subject Area Thin Films
Event World Green Energy Awards
ORCID 0000-0001-7200-6055

Ihor Virt is a researcher associated with Drohobych State Pedagogical University of Ivan Franko and has established a publication record within the field of condensed matter physics and thin-film materials research. His scholarly work has included investigations into semiconductor materials, optical characteristics, and nanostructured systems for scientific applications.[1]

Abstract

This article presents a concise academic profile concerning Ihor Virt and his potential relevance for recognition under the World Green Energy Awards framework. Research activity demonstrates sustained work in semiconductor thin films, optical materials, and nanostructure engineering with applications that intersect energy and materials science disciplines.[2]

Keywords

Thin films, semiconductor physics, pulsed laser deposition, nanostructures, optical materials, zinc oxide coatings, condensed matter physics, materials science.

Introduction

Research associated with thin-film engineering has become increasingly important in modern material technologies. Studies involving optical behavior and semiconductor structures contribute toward understanding material performance and efficiency in scientific and industrial systems.[3]

Research Profile

Available scholarly records indicate publication activity spanning multiple years with indexed research output and citation metrics. Research themes include zinc oxide materials, pulsed laser deposition techniques, and characterization methods for crystalline and semiconductor structures.[4]

Research Contributions

Scientific contributions include studies concerning magnetic behavior, optical responses, thin-film deposition processes, and nanocomposite structures. Such work contributes to broader understanding within material science and supports future development of engineered functional materials.[5]

Publications

Published work associated with Ihor Virt demonstrates continuity in investigations related to thin-film semiconductor materials and deposition technologies. Studies include zinc oxide structures, lead chalcogenide films, optical characterization, and nanostructure behavior under various experimental conditions. Research publications also indicate collaborative scientific activity involving multiple institutions and material science researchers across related areas. Publication trends further reflect sustained participation in peer-reviewed journals and international conference proceedings.[1]

Research Impact

Citation indicators and indexed publication records suggest measurable academic visibility. Scientific outputs involving thin-film materials and semiconductor structures contribute to existing literature supporting both fundamental and applied materials research.[2]

Award Suitability

Consideration for scientific recognition may reasonably involve publication continuity, interdisciplinary contribution, and relevance of research themes. Areas involving functional materials and emerging technologies may align with broader sustainability and technological innovation discussions.[4]

Conclusion

The documented research profile indicates a sustained academic contribution within thin-film and semiconductor research. Scholarly activity demonstrates measurable publication output and ongoing participation in scientific investigations relevant to contemporary materials research.

References

  1. Virt, I. S., Sagan, P., Potera, P., & Yavorskyi, R. (2017). Structural, optical and electrical properties of zinc oxide layers produced by pulsed laser deposition method. Nanoscale Research Letters, 12(1).
    https://doi.org/10.1186/s11671-017-2033-9
  2. Virt, I. S., Tur, Y., Rudyi, I. O., Lopatynskyi, I. Y., Frugynskyi, M. S., Kurilo, I. V., Lusakowska, E., & Witkowski, B. S. (2015). Control of the crystal structure and electrical transport in undoped PbTe films grown by pulsed laser deposition. Journal of Crystal Growth, 428, 51–57.
    https://doi.org/10.1016/j.jcrysgro.2015.09.008
  3. Virt, I., Gamernyk, R., Potera, P., Cieniek, B., & Lozynsky, A. (2022). Transient photoconduction and relaxation photocurrent of ZnO thin films produced by pulsed laser deposition. ECS Journal of Solid State Science and Technology, 11(6).
    https://doi.org/10.1149/2162-8777/ac765f
  4. Virt, I., Potera, P., Wisz, G., Dziedzic, A., Cieniek, B., Lopatynskyi, I., & Frugynskyi, M. (2024). Structural and optical properties of aluminium nitride thin films fabricated using pulsed laser deposition and DC magnetron sputtering on various substrates. Advances in Materials Science, 24(1).
    https://doi.org/10.2478/adms-2024-0001
  5. Bochnowski, W., Żaczek, A., Adamiak, S., Szyller, Ł., Cebulski, J., Kus-Liśkiewicz, M., et al. (2020). Structure and antibacterial properties of Ag and N doped titanium dioxide coatings containing Ti₂.₈₅O₄N phase prepared by magnetron sputtering and annealing. Surface and Coatings Technology, 388.
    https://doi.org/10.1016/j.surfcoat.2020.125844

Zhenmin Ling | Microbiological Biotechnology | Innovative Research Award

Innovative Research Award

Zhenmin Ling
Lanzhou University, China
Zhenmin Ling
Affiliation Lanzhou University
Country China
Scopus ID 56970604900
Documents 41
Citations 1432
h-index 22
Subject Area Microbiological Biotechnology
Event World Green Energy Awards

Zhenmin Ling is associated with Lanzhou University and has contributed to microbiological biotechnology research with emphasis on microbial systems, environmental biotechnology, biomethanation, and microbial interactions. Scholarly output indexed through Scopus indicates notable publication activity and measurable citation impact across interdisciplinary biological research fields.[1]

Abstract

This article presents a concise academic overview of the research profile of Zhenmin Ling and evaluates publication activity, scientific themes, and research visibility. Current records demonstrate engagement in environmental microbiology, biotechnology applications, and microbial metabolism studies that intersect with sustainability and biological engineering approaches.[2]

Keywords

Microbiological biotechnology, microbial metabolism, environmental remediation, biomethanation, gut microbiota, microbial engineering, sustainability research, biotechnology systems.

Introduction

Contemporary microbiological studies increasingly connect biological systems with environmental and technological applications. Research associated with microbial functionality and bioprocess optimization contributes to broader scientific understanding and industrial implementation. Published investigations linked with Zhenmin Ling demonstrate participation in such emerging areas.[3]

Research Profile

Academic records indicate participation in studies involving microbial communities, metabolic mechanisms, heavy metal interactions, and biotechnology development. Citation indicators and indexed publications suggest consistent research engagement and interdisciplinary collaboration across environmental and life science disciplines.[4]

Research Contributions

Research contributions include studies on biomethanation pathways, microbial enzymatic systems, probiotic interactions, and environmental adaptation mechanisms. Several studies examine microbial responses under complex environmental conditions and contribute toward sustainable biotechnology strategies.[5]

Publications

Publication records associated with Zhenmin Ling include work on thermophilic enzymes, microbial reduction mechanisms, gut microbial systems, and protein biomethanation. The research portfolio reflects recurring themes in microbiological biotechnology and environmental biology with collaborative scientific participation across institutions.[1]

Research Impact

Measured impact indicators include more than one thousand citations and an h-index value reflecting sustained scholarly visibility. Citation-based measures should be interpreted together with research quality, collaboration networks, and disciplinary context within biotechnology research environments.

Award Suitability

The research profile aligns with award categories emphasizing sustainable science, biotechnology innovation, and environmental research advancement. Evaluation suitability can be interpreted from publication activity, interdisciplinary contribution, and scientific impact within indexed research systems.

Conclusion

Available academic indicators present a structured picture of ongoing contributions to microbiological biotechnology and related fields. Scholarly output and citation evidence suggest continuing engagement in research addressing biological and environmental challenges.

References

  1. Elsevier. (2026). Scopus author details: Zhenmin Ling, Author ID 56970604900.
    https://www.scopus.com/authid/detail.uri?authorId=56970604900
  2. Fan, J., Wu, Y., Wang, X., Ji, J., & Li, X. (2026). The probiotic enhances donor microbiota stability and improves the efficacy of fecal microbiota transplantation for treating colitis. Journal of Advanced Research.
    https://www.sciencedirect.com/science/article/pii/S2090123225001778
  3. Chen, Y., Ling, Z., Ji, J., Liu, P., & Li, X. (2024). The combination of oxalic acid and uric acid degrading probiotic from traditional Chinese fermented food reduces calcium accumulation and prevents kidney stones formation in rats. Food Bioscience.
    https://www.sciencedirect.com/science/article/abs/pii/S2212429224015293
  4. Khan, A., Wang, W., Ji, J., Kumar Khanal, S., & Li, X. (2024). Fermented lily bulbs by Jiangshui probiotics improves lung health in mice. Food Chemistry.
    https://www.sciencedirect.com/science/article/abs/pii/S0308814623028881
  5. Wang, X., Wang, Z., Su, S., Liu, P., & Li, X. (2024). Probiotics Pediococcus acidilactici GR-1 promotes the functional strains and remodels gut microbiota to reduce Cr(VI) toxicity in a dual-chamber simulated intestinal system. Chemosphere.
    https://www.sciencedirect.com/science/article/abs/pii/S0045653524008208