Todor Todorov | Green Hydrogen | Editorial Board Member

Prof. Dr. Todor Todorov | Green Hydrogen | Editorial Board Member

Professor | Technical University of Sofia | Bulgaria

Todor Stoilov Todorov is a distinguished scholar in the fields of Microelectromechanical Systems (MEMS), precision engineering, and mechanism and machine theory, with a sustained academic and research career at the Technical University of Sofia. His expertise spans MEMS design, smart-material actuators, thermomechanical systems, electromechanical devices, vibration energy harvesting, and advanced mechanism synthesis, supported by decades of teaching, research, and academic leadership roles, including Dean of the Faculty of Industrial Technology, Head of the Laboratory of Microelectromechanical Systems, Deputy Head of Department, and active membership in university governing and scientific committees. His research contributions include theoretical and experimental advancements in shape memory alloy actuators, thermoelectric and thermomechanical energy harvesters, micro-cantilever sensor systems, and regenerative electromechanical mechanisms, alongside extensive collaborations with national and international institutions such as Lomonosov Moscow State University and major innovation programs funded by the National Science Fund of Bulgaria. As project leader, he has directed initiatives focused on virus-detection micro-platforms, smart-material-based actuator systems, MEMS energy harvesters, and electromechanical system dynamics. His scholarly output exceeds 130 scientific publications, complemented by textbooks, manuals, and patents, while his service on editorial boards of international journals and his roles as reviewer and guest editor for MDPI journals reinforce his influence on global research dissemination in robotics, actuators, materials science, and modern engineering systems. His scientific work consistently advances innovative microsystems and enhances the efficiency, precision, and functionality of mechanical and electromechanical technologies, contributing significantly to academic progress and industrial innovation. His academic excellence and research influence are reflected in his growing recognition, with 266 citations, 36 documents, and an h-index of 11.

Profiles: Scopus | ORCID | ResearchGate

Featured Publications

1. Todorov, G., Kamberov, K., & Todorov, T. (2025). Thermodynamic analysis and optimization of a regenerative heat exchange system for solid oxide electrolyzer-based hydrogen production. Energies. Cited by: 2

2. Yotov, I., Todorov, G., Gavrilov, T., & Todorov, T. (2025). Magnetic frequency tuning of a shape memory alloy thermoelectric vibration energy harvester. Energies.

3. Yotov, I., Todorov, G., Gieva, E., & Todorov, T. (2025). Dynamics of a self-excited vibrating thermal energy harvester with shape memory alloys and PVDF cantilevers. Actuators.
Cited by: 4

Todor Stoilov Todorov’s pioneering research in MEMS, smart-material actuators, and micro-scale energy systems drives transformative advances in precision engineering. His innovations strengthen global progress in sensing, energy harvesting, and intelligent mechanisms, supporting next-generation technologies for industry and society.

Mahdi Jahami | Green Hydrogen | Green Hydrogen Production Award

Dr. Mahdi Jahami | Green Hydrogen | Green Hydrogen Production Award

Professor | The University of Alabama | United States

Dr. Mahdi Jahami is a dedicated researcher in the Department of Mechanical Engineering, Tuscaloosa, United States, whose work focuses on renewable energy systems, sustainable hydrogen production, and life cycle assessment (LCA). His research aims to develop environmentally responsible energy conversion technologies by integrating renewable resources with innovative modeling and optimization frameworks. Dr. Jahami’s scholarly contributions emphasize reducing greenhouse gas emissions through cleaner production pathways and advancing the global transition toward a low-carbon, sustainable energy future. His notable publication, “Life cycle assessment of SMR and Electrified-SMR with renewable energy systems: Projecting emissions and optimizing hydrogen production for California’s goals,” provides a comprehensive assessment of hydrogen generation via Steam Methane Reforming (SMR) and Electrified-SMR systems powered by renewable energy. The study delivers significant insights into optimizing hydrogen production efficiency while aligning with ambitious environmental and policy objectives. With 9 citations, 1 publication, and a Scopus h-index of 1, Dr. Jahami’s research demonstrates growing academic recognition and influence in the fields of clean energy and carbon mitigation. Through collaboration with international co-authors, he applies an interdisciplinary approach combining techno-economic analysis, emissions modeling, and renewable energy integration to design efficient, sustainable hydrogen systems. Beyond academic contributions, his work holds strong societal impact by supporting global initiatives for carbon neutrality, clean technology advancement, and sustainable industrial transformation. Through rigorous research and innovation, Dr. Jahami continues to contribute to the evolution of green engineering solutions, reinforcing the vital role of hydrogen technologies in achieving net-zero emissions and driving global energy sustainability.

Profiles: Scopus | ResearchGate | LinkedIn

Featured Publications

1. Jahami, M. (2025). Life cycle assessment of SMR and Electrified-SMR with renewable energy systems: Projecting emissions and optimizing hydrogen production for California’s 2035 goals. Renewable Energy. Cited by 9.

Dr. Mahdi Jahami’s research advances the global transition toward sustainable hydrogen production and renewable energy integration, providing innovative life cycle–based solutions that reduce emissions and support carbon-neutral industrial systems. His work bridges engineering innovation and environmental responsibility, driving progress toward a cleaner, more resilient energy future.