Omid Karimi Sadaghiani | Energy | Best Researcher Award

Best Researcher Award

Omid Karimi Sadaghiani
University of Turkish Aeronautical Association
Omid Karimi Sadaghiani
Affiliation University of Turkish Aeronautical Association
Country Turkey
Scopus ID 55812863700
Documents 7
Citations 132
h-index 6
Subject Area Energy
Event Applied Scientist Awards
Google Scholar ou9XdQcAAAAJ&hl

Omid Karimi Sadaghiani is a researcher affiliated with the University of Turkish Aeronautical Association, Turkey, whose scholarly work has contributed to research in the field of Energy. His publication record indexed in Scopus demonstrates sustained scientific activity through peer-reviewed publications, citation performance, and measurable academic influence. These indicators collectively provide evidence of continuing engagement in energy-related research and technological development, supporting his recognition for the Best Researcher Award presented through the Applied Scientist Awards program.[1] [2]

Abstract

The Best Researcher Award recognizes scholars who demonstrate measurable academic productivity, quality scientific publications, and sustained contributions to their research disciplines. Omid Karimi Sadaghiani has established a research profile within the energy domain through peer-reviewed publications indexed in internationally recognized bibliographic databases. His Scopus metrics, citation performance, and documented research output indicate continued scholarly engagement in energy-related investigations. These achievements represent objective indicators frequently considered in evaluating research excellence and scientific impact within academic communities.[1] [3]

Keywords

Best Researcher Award; Energy Research; Applied Scientist Awards; Scientific Publications; Scopus Author Profile; Citation Analysis; Academic Recognition; Research Excellence.

Introduction

Academic recognition programs evaluate researchers using transparent scholarly indicators including publication quality, citation influence, research continuity, and disciplinary relevance. These measures help identify researchers whose work contributes to scientific advancement through peer-reviewed dissemination and international visibility. Omid Karimi Sadaghiani’s academic record reflects these characteristics within the energy research community and demonstrates participation in internationally indexed scientific literature.[2] [4]

Research Profile

Omid Karimi Sadaghiani conducts research primarily within the field of energy, emphasizing scientifically validated methodologies and peer-reviewed dissemination. According to publicly available academic indexing services, his research portfolio includes seven Scopus-indexed publications with an accumulated citation count of 132 and an h-index of 6. These bibliometric indicators provide quantitative evidence of scholarly productivity and research visibility while reflecting engagement with internationally recognized academic publishing standards.[1]

Research Contributions

Omid Karimi Sadaghiani have focused on advancing scientific understanding in energy-related studies through analytical investigations and publication in peer-reviewed journals. His work contributes to the broader scientific dialogue by providing reproducible research findings that support technological and engineering development. The citation performance associated with his publications indicates continued scholarly interest from the international research community.[2] [5]

Publications

Omid Karimi Sadaghiani has published research articles indexed by Scopus, supporting the dissemination of scholarly knowledge in the field of energy. His publication profile demonstrates participation in internationally recognized scientific communication and contributes to the cumulative body of engineering and energy research.[1]

  • Peer-reviewed scientific publications.
  • Internationally indexed research outputs.
  • Research articles contributing to energy science.

Research Impact

Research impact can be assessed through citations, publication quality, and continued scholarly engagement. With 132 citations and an h-index of 6, Omid Karimi Sadaghiani’s academic profile demonstrates measurable influence within his field. These metrics are widely utilized by research institutions and academic organizations as objective indicators of scientific visibility and research relevance.[1] [3]

Award Suitability

The Best Researcher Award recognizes measurable research accomplishments evaluated through scholarly productivity, publication quality, research visibility, citation performance, and contribution to scientific advancement. Based on publicly available bibliometric evidence, Omid Karimi Sadaghiani demonstrates characteristics consistent with these evaluation criteria. His documented research activity, international indexing, and citation profile collectively support consideration for academic recognition within the Applied Scientist Awards framework.[2] [5]

Conclusion

Omid Karimi Sadaghiani has established a documented academic profile characterized by peer-reviewed publications, recognized citation performance, and continued engagement in energy research. His scholarly achievements provide objective evidence of research productivity and scientific contribution, making his work representative of the qualities acknowledged through the Best Researcher Award. Continued research dissemination and international collaboration are expected to further strengthen his academic impact.

References

  1. Elsevier. (n.d.). Scopus Author Details: Omid Karimi Sadaghiani, Author ID 55812863700.
    https://www.scopus.com/authid/detail.uri?authorId=55812863700
  2. OK Sadaghiyani, et al. (2018). Energy and exergy analysis of parabolic trough collectors.
    https://iieta.org/sites/default/files/Journals/IJHT/36.01_20.pdf
  3. OK Sadaghiyani, et al. (2014). Numerical study on heat transfer enhancement and friction factor of LS-2 parabolic solar collector.
    https://asmedigitalcollection.asme.org/thermalscienceapplication/article-abstract/6/1/012001/379793
  4. W Peng, OK Sadaghiani, et al. (2023). Enhancement of quality and quantity of woody biomass produced in forests using machine learning algorithms.
    https://www.sciencedirect.com/science/article/pii/S0961953423001824
  5. OK Sadaghiyani, MBS Azad, et al. (2014). Two new designs of parabolic solar collectors.
    https://thermalscience.rs/pdfs/papers-2013/TSCI111105089S.pdf

Hengheng Xia | Energy Sustainability | Best Researcher Award

Dr. Hengheng Xia | Energy Sustainability | Best Researcher Award

R&D Director | National Engineering Research Center for Supercapacitor for Vechicles, Shanghai Aowei Technology Development Co, Ltd | China

Dr. Hengheng Xia  is a distinguished Senior Engineer and R&D Director at the National Engineering Research Center for Supercapacitor for Vehicles, Shanghai Aowei Technology Development Co., Ltd., with over a decade of experience advancing energy storage technologies. His research focuses on the design, optimization, and commercialization of supercapacitors, high-power lithium/sodium-ion batteries, and high-performance electrolytes. Over the years, he has made substantial contributions to the field, authoring 16 scientific papers published in SCI and Chinese core journals, with 64 citations across 64 documents, 7 indexed publications, and an h-index of 3. His expertise extends beyond academic research into innovation and standardization, as evidenced by 46 patent applications, active participation in drafting 3 technical standards, and co-authoring 2 professional monographs that contribute to industrial and academic knowledge exchange. Among his representative works, his featured publication “Quasi-commercial pouch sodium-ion battery capacitors achieve extended high-power cyclability through activated carbon hybrid cathode design with presodiation-free anodes” highlights his pioneering efforts in developing practical sodium-ion capacitor systems with enhanced cyclability and energy efficiency. Other notable studies explore the optimization of organic electrolytes in Li-ion hybrid supercapacitors and the functionalization of carbon nanotubes for improved electrochemical activity. Through his innovative research and leadership, Dr. Hengheng Xia has played a pivotal role in bridging materials science and industrial application, driving forward China’s progress in sustainable and high-performance energy storage technologies.

Profile : Scopus | Research Gate

Featured Publication

Xia, H., [Other authors if available]. (2024). Optimization of mass matching and organic electrolytes for Li-ion hybrid supercapacitors based on LiMn₂O₄ cathode and AC anode with commercial-level mass loading. Journal of Solid State Electrochemistry.

Christos Mytafides | Nanotechnology Innovations | Innovation in Science Award

Dr. Christos Mytafides | Nanotechnology Innovations | Innovation in Science Award

Postdoctoral Researcher From Technical University of Crete, Greece

Christos K. Mytafides is a dedicated researcher specializing in advanced multifunctional energy-harvesting materials. His expertise spans printed electronics, structural composites, and renewable energy applications. He is currently a Postdoctoral Research Scientist at the Physical Chemistry & Chemical Processes Laboratory at the Technical University of Crete. His previous roles include PhD research positions at the University of Ioannina, the University of Miami, and Eindhoven University of Technology. His research primarily focuses on integrating energy-harvesting capabilities into composite materials, particularly through thermoelectric and optoelectronic technologies. His academic background includes a PhD and master’s degrees in Materials Science & Engineering, as well as Environmental Engineering. With numerous publications in high-impact journals and multiple prestigious scholarships, including the Fulbright Scholarship, Mytafides continues to contribute significantly to the field of sustainable energy technologies. His work has practical implications for developing next-generation materials with enhanced energy efficiency, sustainability, and functionality.

Professional Profiles

Education

Christos K. Mytafides holds a PhD in Materials Science & Engineering from the University of Ioannina, where he specialized in advanced multifunctional energy-harvesting materials. His doctoral research focused on integrating printed electronics with energy-harvesting capabilities in advanced structural composites. Prior to his PhD, he earned a Master’s Degree in Advanced Materials from the University of Ioannina, specializing in optoelectronic and magnetic materials. His master’s thesis explored the design and efficiency enhancement of dye-sensitized solar cells through plasmonic nanoparticles. Additionally, he obtained another Master’s Degree in Environmental Engineering & Science from Democritus University of Thrace, where he focused on energy-efficient design and renewable energy applications. His thesis investigated transforming a university building into a zero-energy structure. His diverse academic background has provided him with a strong foundation in materials science, optoelectronics, nanotechnology, and sustainable energy solutions, all of which play a crucial role in his ongoing research contributions.

Professional Experience

Mytafides has amassed extensive experience in academia and research, with notable positions at prestigious institutions. Currently, he is a Postdoctoral Research Scientist at the Technical University of Crete’s Physical Chemistry & Chemical Processes Laboratory. Previously, he was a PhD Researcher at the University of Ioannina, where he explored multifunctional energy-harvesting materials. He also conducted research at the Advanced Nano Systems Laboratory at the University of Miami, focusing on multifunctional composites with embedded photo-thermal energy-harvesting capabilities. During a research traineeship at Eindhoven University of Technology, he worked on innovative solar cell materials and designs. His expertise includes additive manufacturing, thermoelectric generators, and carbon-based flexible electronics. His work integrates advanced material processing techniques with real-world applications, leading to the development of next-generation energy solutions. Mytafides’ research contributions are widely recognized, making him a key figure in energy-harvesting composite materials.

Research Interests

Mytafides’ research interests center on developing multifunctional materials for energy harvesting and sustainable applications. His work involves integrating printed electronics into composite materials to create energy-efficient structures. He is particularly interested in thermoelectric and optoelectronic materials, which have the potential to revolutionize energy sustainability. His expertise extends to carbon-based nanostructures, additive manufacturing, and hybrid energy systems that combine solar and thermal energy harvesting. By utilizing advanced material synthesis and characterization techniques, Mytafides aims to enhance energy conversion efficiency in various applications, including smart materials and green technologies. His work aligns with global efforts to develop innovative solutions for renewable energy and energy-efficient materials, with applications in aerospace, automotive, and structural engineering. His research contributions have been published in high-impact journals, highlighting his significant role in advancing sustainable energy solutions.

Research Skills

Mytafides possesses extensive research skills in materials science, nanotechnology, and energy harvesting. He is proficient in advanced material characterization techniques such as spectroscopy, electron microscopy, and thermal analysis. His expertise in additive manufacturing enables him to develop highly conductive carbon-based structures for flexible thermoelectric applications. He has experience with composite materials engineering, particularly in integrating energy-harvesting functionalities into fiber-reinforced polymers. His computational skills include simulation and modeling of energy conversion processes, optimizing material performance for real-world applications. Additionally, he has hands-on experience with printed electronics, allowing him to design and fabricate novel energy-efficient devices. His interdisciplinary approach combines experimental research with theoretical insights, leading to the development of high-performance materials for sustainable applications. His skillset makes him a valuable contributor to advancements in renewable energy and smart material technologies.

Awards and Honors

Mytafides has received numerous awards and distinctions for his research excellence. He was awarded the prestigious Fulbright Scholarship for PhD research at the University of Miami, where he studied multifunctional composites with embedded photo-thermal energy-harvesting capabilities. He also received funding from the Hellenic Foundation for Research and Innovation and the National Strategic Reference Framework for his doctoral research. Additionally, he participated in the Erasmus+ Mobility program, which supported his research traineeship at Eindhoven University of Technology. His contributions have been recognized through multiple fellowships and research grants, reflecting his impact on the field of materials science and energy harvesting. These accolades highlight his commitment to advancing sustainable technologies and his ability to conduct high-impact research in collaboration with international institutions.

Conclusion

Christos K. Mytafides is a distinguished researcher in the field of advanced multifunctional energy-harvesting materials. His expertise in materials science, nanotechnology, and energy-efficient design has led to significant contributions in printed electronics, composite materials, and renewable energy technologies. His academic journey, spanning multiple prestigious institutions, has equipped him with the necessary skills and knowledge to develop next-generation sustainable energy solutions. His research has been widely recognized, with numerous publications, awards, and funded projects supporting his work. As a Postdoctoral Research Scientist, he continues to explore innovative ways to enhance energy conversion efficiency, aiming to develop smart, sustainable materials for various applications. His dedication to interdisciplinary research and collaboration ensures that his work remains at the forefront of scientific advancements in energy harvesting and materials engineering.

 Publications Top Notes

  1. Advanced functionalization of carbon fiber-reinforced polymer composites towards enhanced hybrid 4-terminal photo-thermal energy harvesting devices by integrating dye-sensitized solar cells and thermoelectric generators

    • Authors: Mytafides, Christos K.; Tzounis, Lazaros; Prouskas, Costas; Yentekakis, Ioannis V.; Paipetis, Alkiviadis S.

    • Year: 2025

  2. A hierarchically modified fibre-reinforced polymer composite laminate with graphene nanotube coatings operating as an efficient thermoelectric generator

    • Authors: Mytafides, Christos K.; Tzounis, Lazaros; Tsirka, Kyriaki; Karalis, George; Liebscher, Marco; Lambrou, Eleftherios; Gergidis, Leonidas; Paipetis, Alkiviadis

    • Year: 2024

  3. Additive manufacturing of highly conductive carbon nanotube architectures towards carbon-based flexible thermoelectric generators

    • Authors: Mytafides, Christos K.; Wright, William J.; Gustinvil, Raden; Tzounis, Lazaros; Karalis, George; Paipetis, Alkiviadis; Celik, Emrah

    • Year: 2024

  4. Carbon fiber/epoxy composite laminates as through-thickness thermoelectric generators

    • Authors: Karalis, George; Tzounis, Lazaros; Tsirka, Kyriaki; Mytafides, Christos K.; Liebscher, Marco; Paipetis, Alkiviadis

    • Year: 2022

  5. Automated detection-classification of defects on photo-voltaic modules assisted by thermal drone inspection

    • Authors: Gurras, Arsenios; Gergidis, Leonidas; Mytafides, Christos K.; Tzounis, Lazaros; Paipetis, Alkiviadis S.

    • Year: 2021

  6. Fully printed and flexible carbon nanotube-based thermoelectric generator capable for high-temperature applications

    • Authors: Mytafides, Christos K.; Tzounis, Lazaros; Karalis, George; Formanek, Petr; Paipetis, Alkiviadis

    • Year: 2021

  7. Printed Single-Wall Carbon Nanotube-Based Joule Heating Devices Integrated as Functional Laminae in Advanced Composites

    • Authors: Karalis, George; Tzounis, Lazaros; Dimos, Evangelos; Mytafides, Christos K.; Liebscher, Marco; Karydis-Messinis, Andreas; Zafeiropoulos, Nikolaos E.; Paipetis, Alkiviadis

    • Year: 2021

  8. A high-performance flexible and robust printed thermoelectric generator based on hybridized Te nanowires with PEDOT:PSS

    • Authors: Karalis, George; Tzounis, Lazaros; Mytafides, Christos K.; Tsirka, Kyriaki; Formanek, Petr; Stylianakis, Minas M.; Kymakis, Emmanuel; Paipetis, Alkiviadis S.

    • Year: 2021

  9. Advanced Glass Fiber Polymer Composite Laminate Operating as a Thermoelectric Generator: A Structural Device for Micropower Generation and Potential Large-Scale Thermal Energy Harvesting

    • Authors: Karalis, George; Tzounis, Lazaros; Tsirka, Kyriaki; Mytafides, Christos K.; Itskaras, Angelos Voudouris; Liebscher, Marco; Lambrou, Eleftherios; Gergidis, Leonidas N.; Barkoula, Nektaria-Marianthi; Paipetis, Alkiviadis

    • Year: 2021

  10. An Approach toward the Realization of a Through-Thickness Glass Fiber/Epoxy Thermoelectric Generator

  • Authors: Karalis, George; Mytafides, Christos K.; Tzounis, Lazaros; Paipetis, Alkiviadis; Barkoula, Nektaria-Marianthi

  • Year: 2021

  1. High-Power All-Carbon Fully Printed and Wearable SWCNT-Based Organic Thermoelectric Generator

  • Authors: Mytafides, Christos K.; Tzounis, Lazaros; Karalis, George; Formanek, Petr; Paipetis, Alkiviadis S.

  • Year: 2021

  1. Epoxy/glass fiber nanostructured p- and n-type thermoelectric enabled model composite interphases

  • Authors: Karalis, George; Tsirka, Kyriaki; Tzounis, Lazaros; Mytafides, Christos K.; Koutsotolis, Loukas; Paipetis, Alkiviadis S.

  • Year: 2020

  1. Hierarchical reinforcing fibers for energy harvesting applications—A strength study

  • Authors: Karalis, George; Mytafides, Christos K.; Polymerou, Angelos; Tsirka, Kyriaki; Tzounis, Lazaros; Gergidis, Leonidas; Paipetis, Alkiviadis S.

  • Year: 2020

  1. Design, fabrication and characterization of plasmon-enhanced dye-sensitized solar cells

  • Authors: Mytafides, Christos K.

  • Year: 2019

  1. Transformation of a university building into a zero-energy building in Mediterranean climate

  • Authors: Mytafides, Christos K.; Dimoudi, A.; Zoras, S.

  • Year: 2017

  1. Integrated architectures of printed electronics with energy-harvesting capabilities in advanced structural composites

  • Authors: Mytafides, Christos K.