Christopher Koroneos | Energy Generation Technologies | Best Scholar Award

Best Scholar Award

Christopher Koroneos
School of Chemical Engineering, National Technical University of Athens
Christopher Koroneos
Affiliation National Technical University of Athens
Country Greece
Scopus ID 6602180745
Documents 99
Citations 4,724
h-index 36
Subject Area Energy Generation Technologies
Event World Green Energy Awards
ORCID
0000-0001-5341-976X

Christopher Koroneos is a researcher associated with the School of Chemical Engineering at the National Technical University of Athens, Greece, with academic contributions in the field of energy generation technologies and sustainability research. His scholarly profile reflects significant involvement in environmental systems analysis, renewable energy technologies, and sustainable engineering methodologies. The recognition associated with the Best Scholar Award under the World Green Energy Awards highlights his documented academic impact and sustained contributions to scientific literature in energy-related disciplines.[1]

Abstract

The Best Scholar Award recognition associated with Christopher Koroneos reflects a documented academic profile characterized by sustained research activity, publication output, and citation performance in the field of energy generation technologies. His scholarly work has contributed to the broader understanding of sustainable energy systems, environmental management, and energy policy evaluation. The research profile demonstrates measurable scientific influence through indexed publications, interdisciplinary collaborations, and citation metrics within recognized academic databases.[1][2]

Keywords

  • Energy Generation Technologies
  • Renewable Energy
  • Sustainability Assessment
  • Environmental Engineering
  • Life Cycle Analysis
  • Green Energy Research
  • Academic Recognition

Introduction

Research in sustainable energy technologies has become increasingly significant in response to global environmental challenges and the transition toward low-carbon systems. Academic researchers working in energy systems analysis and environmental sustainability contribute to scientific understanding that supports policy development, industrial adaptation, and technological innovation. Christopher Koroneos has participated in this broader academic landscape through studies related to energy efficiency, environmental assessment, and sustainable engineering systems.[1]

Research Profile

Christopher Koroneos is affiliated with the School of Chemical Engineering at the National Technical University of Athens in Greece. His Scopus-indexed research profile indicates publication activity across multiple energy and sustainability-related domains, including renewable energy systems, environmental performance analysis, and engineering optimization studies.[1]

Research Contributions

The research contributions associated with Christopher Koroneos include analytical work related to sustainable energy technologies and environmental impact evaluation. His publications frequently address energy systems performance, lifecycle assessment methodologies, and environmental management approaches relevant to industrial and renewable energy applications.[2]

Publications

The publication record of Christopher Koroneos includes journal articles and scholarly contributions indexed in international academic databases. His research output reflects sustained participation in peer-reviewed scientific communication and interdisciplinary environmental studies.[4]

Research Impact

The research impact associated with Christopher Koroneos can be observed through citation metrics, publication indexing, and academic visibility in energy and sustainability research areas. Citation counts and h-index indicators suggest ongoing engagement with the scientific community and continued reference to his work in subsequent scholarly publications.[1]

Award Suitability

The academic profile of Christopher Koroneos demonstrates characteristics commonly associated with recognition under the Best Scholar Award category. Indicators including publication volume, citation performance, research continuity, and subject relevance to energy generation technologies align with the evaluation criteria frequently utilized for scholarly recognition in sustainability-focused academic events.[1]

Conclusion

Christopher Koroneos has established an academic profile characterized by sustained research activity in energy generation technologies and sustainability-related engineering disciplines. Bibliometric indicators, publication output, and scholarly visibility collectively demonstrate measurable academic influence within environmental and energy research domains. The Best Scholar Award recognition within the World Green Energy Awards framework reflects the documented relevance and continuity of his scholarly contributions.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Christopher Koroneos, Author ID 6602180745. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6602180745
  2. ORCID. (n.d.). ORCID profile for Christopher Koroneos.
    https://orcid.org/0000-0001-5341-976X
  3. World Green Energy Awards. (n.d.). Official event website and award information.
    https://greenenergyaward.com/
  4. Roinioti, A., & Koroneos, C. (2017). The decomposition of CO2 emissions from energy use in Greece before and during the economic crisis and their decoupling from economic growth. Renewable and Sustainable Energy Reviews, 76, 448–459.
    https://doi.org/10.1016/j.rser.2017.03.026
  5. Koroneos, C., Polyzakis, A., Xydis, G., Stylos, N., & Nanaki, E. (2017). Exergy analysis for a proposed binary geothermal power plant in Nisyros Island, Greece. Geothermics, 70, 38–46. https://doi.org/10.1016/j.geothermics.2017.06.004

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Muhammad Mujahid | Perovskites | Best Researcher Award

Best Researcher Award

Muhammad Mujahid — Nacionalinis Fizinių ir technologijos mokslų centras (NFTMC), Lithuania

Research Profile
Affiliation Nacionalinis Fizinių ir technologijos mokslų centras (NFTMC)
Country Lithuania
Scopus ID 57191832420
Documents 9
Citations 1,509
h-index 7
Subject Area Perovskites
Event World Green Energy Awards
ORCID 0000-0003-4714-9980

The Best Researcher Award recognition highlights the scholarly activities and scientific contributions of Muhammad Mujahid in the field of perovskite-based renewable energy materials and advanced energy technologies. Associated with the Nacionalinis Fizinių ir technologijos mokslų centras (NFTMC), Lithuania, the researcher has contributed to academic literature focused on material innovation, photovoltaic performance, and sustainable energy applications.[1] The research profile demonstrates measurable academic visibility through indexed publications, citation impact, and interdisciplinary engagement related to green energy technologies.[2]

Abstract

This academic article presents an overview of the research profile and scholarly recognition associated with Muhammad Mujahid in relation to the Best Researcher Award under the World Green Energy Awards initiative. The research activities emphasize perovskite materials, renewable energy systems, and photovoltaic advancements aimed at improving sustainable energy technologies.[3] The researcher’s publication record, citation metrics, and interdisciplinary engagement indicate a measurable contribution to contemporary materials science and green energy research. The article also evaluates research impact indicators and award suitability based on academic performance, subject relevance, and scientific visibility within indexed databases.[1]

Keywords

Perovskites; Renewable Energy; Photovoltaics; Green Energy Technologies; Sustainable Materials; Solar Cell Research; Materials Science; Academic Recognition; Scopus Indexed Research; Energy Conversion.

Introduction

Perovskite materials have emerged as a significant area of research within renewable energy studies due to their promising optoelectronic properties and efficiency potential in photovoltaic applications. Contemporary scientific investigations increasingly focus on improving device stability, scalability, and energy conversion efficiency to support the transition toward sustainable energy infrastructures.

Research Profile

The research profile of Muhammad Mujahid demonstrates active engagement in renewable energy and materials science research domains, particularly those involving perovskite technologies and advanced photovoltaic systems.[1] Indexed academic contributions indicate publication activity across peer-reviewed journals and collaborative research initiatives related to sustainable energy solutions.

Research Contributions

The researcher’s contributions are associated with the investigation of energy-efficient materials and renewable energy technologies aimed at improving the operational performance of solar energy systems. Research outputs in the area of perovskites often address efficiency enhancement, defect engineering, charge transport mechanisms, and environmental stability considerations.

Publications

The publication profile indexed under the Scopus Author ID demonstrates scholarly engagement in peer-reviewed scientific communication. The available publication metrics indicate growing citation recognition and research visibility within renewable energy and materials science domains.[1]

Research Impact

Research impact indicators provide quantitative insight into academic visibility and scholarly influence. According to the indexed profile, the researcher has accumulated 1,509 citations with an h-index of 7 across 9 documents, indicating measurable engagement within the scientific community.[1] Citation performance reflects the relevance of the published studies to contemporary research themes in renewable energy and materials science.

Award Suitability

The research profile of Muhammad Mujahid aligns with the thematic objectives of the World Green Energy Awards due to the demonstrated focus on perovskite materials, renewable energy technologies, and sustainable scientific innovation. The combination of indexed publications, citation performance, interdisciplinary collaboration, and subject relevance supports the suitability of the researcher for recognition under the Best Researcher Award category.

The academic contributions further indicate participation in scientific efforts aimed at addressing global sustainability challenges through advanced energy research. The researcher’s activities are therefore considered relevant to contemporary discussions on clean energy transition and environmentally responsible technological development.

Conclusion

Muhammad Mujahid’s academic profile reflects measurable contributions to renewable energy and perovskite research within the broader field of sustainable materials science. Through indexed publications, citation visibility, and interdisciplinary research engagement, the researcher demonstrates alignment with internationally relevant scientific priorities related to green energy technologies.[1] The overall research trajectory and thematic relevance support recognition under the Best Researcher Award associated with the World Green Energy Awards initiative.

References

  1. Elsevier. (n.d.). Scopus author details: Muhammad Mujahid, Author ID 57191832420. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57191832420
  2. ORCID. (n.d.). ORCID profile for Muhammad Mujahid.
    https://orcid.org/0000-0003-4714-9980
  3. World Green Energy Awards. (n.d.). Academic recognition and sustainability initiatives.
    https://greenenergyaward.com/
  4. Mujahid, M., Gradauskas, J., Sužiedėlis, A., Širmulis, E., & Ašmontas, S. (2025). Recent advancements in understanding hot carrier dynamics in perovskite solar cells. Energies, 18(13), 3543.
    https://doi.org/10.3390/en18133543
  5. Mujahid, M., Čerškus, A., Gradauskas, J., Grigucevičienė, A., Giraitis, R., Leinartas, K., Lučun, A., Petrauskas, K., Selskis, A., Sužiedėlis, A., Šilėnas, A., Širmulis, E., & Ašmontas, S. (2025). Unveiling the influence of hot carriers on photovoltage formation in perovskite solar cells. Materials, 18(1), 85.
    https://doi.org/10.3390/ma18010085