Beyza Durusoy | Solar Energy | Best Researcher Award

Dr. Beyza Durusoy | Solar Energy | Best Researcher Award

PhD. Graduate, at Middle East Technical University, Turkey.

Beyza Durusoy is a dedicated researcher specializing in micro and nanotechnology, with a strong focus on photovoltaic systems and solar energy materials. Currently pursuing her Ph.D. at Middle East Technical University (METU), she investigates potential-induced degradation (PID) mechanisms in perovskite and silicon solar cells. Her work has led to innovative anti-PID solutions, improving solar cell efficiency. Beyza has gained international research experience as a Visiting Researcher at Fraunhofer CSP, Germany, contributing to the Viperlab Project. She has been actively involved in academia, supervising students, and participating in TUBITAK-funded projects. With a passion for renewable energy, she has authored several publications in high-impact journals. She has received multiple awards for academic excellence and has contributed to various international conferences. Her expertise spans solar energy modeling, bifacial PV modules, and sustainable energy solutions.

Professional Profile

Education 🎓

Beyza Durusoy is currently completing her Ph.D. in Micro and Nanotechnology at METU (2020–2024). Her research focuses on analyzing potential-induced degradation mechanisms in perovskite and silicon solar cells with distinct glass encapsulants. Her M.Sc. in Physics (2020) from METU centered on modeling the efficiency of bifacial PV modules, evaluating rooftop solar potential, and analyzing rear-side irradiation. She also supervised undergraduate students, fostering future renewable energy researchers. During her undergraduate years, she was involved in interdisciplinary projects, including climate research and high-efficiency solar cell fabrication. Her academic journey is marked by a strong foundation in physics, nanotechnology, and solar energy, reflecting her commitment to advancing photovoltaic technologies.

Experience 🌟

Beyza has extensive experience in photovoltaic research, having served as a Scholar in METU’s Micro and Nanotechnology Program from 2020 to 2024, where she collaborated on TUBITAK 2244 projects with Sisecam Glass Company. In 2023, she was a Visiting Researcher at Fraunhofer CSP, Germany, working on PID mitigation strategies in perovskite solar cells. From 2019 to 2021, she was a Research Assistant at METU, conducting recitation sessions and teaching solar energy courses. Her early career included roles as a researcher in various TUBITAK projects related to solar energy and climate studies. She also interned at the Medical Physics Laboratory at Aristotle University of Thessaloniki, Greece. As an AI Trainer since 2024, she applies her expertise in data analysis and solar modeling.

Research Interests 🌍

Beyza’s research interests span solar photovoltaics, micro and nanotechnology, and renewable energy. She specializes in potential-induced degradation (PID) mechanisms in solar cells, developing anti-PID solutions for enhanced efficiency. Her work on bifacial PV modules includes modeling rear-side irradiation and assessing rooftop solar potential. She is also involved in glass technology innovations for solar applications, collaborating with industry leaders like Sisecam. Beyond photovoltaics, her interests extend to climate-related solar energy applications, such as analyzing corallite growth in response to solar irradiation. Her multidisciplinary approach combines experimental and computational techniques to optimize solar energy systems for sustainable development.

Awards 🏆

Beyza has received multiple awards and certifications recognizing her academic excellence and contributions to renewable energy. In 2022, she was honored as the most successful Ph.D. student in METU’s Micro and Nanotechnology Program, achieving a CGPA of 3.71/4.00. She holds several e-certificates from the Renewables Academy, including “COBENEFITS Trainer for Climate Action” and “COBENEFITS Specialist in Renewable Energy.” She has also been recognized for her contributions to renewable energy policy development and employment impact analysis. Her early achievements include a Python Programming certificate from Michigan State University in 2014. Her consistent dedication to research and education has positioned her as a leading scholar in solar energy innovation.

Top Noted Publications 📚

  • B. Durusoy et al. “Suppression of the Shunting-Type Potential Induced Degradation (PID-s) Through an Ion Exchange Process on Soda Lime Silicate Glasses,” Solar Energy Materials and Solar Cells, 2025.
  • B. Durusoy et al. “Standardized Test Routines for the Assessment of Potential Induced Degradation of Perovskite Solar Cells,” Proceedings of EU PVSEC, 2024.
  • B. Durusoy et al. “Technical Potential of Rooftop Solar Photovoltaic for Ankara,” Renewable Energy, 2022.
  • B. Durusoy et al. “Solar Irradiation on the Rear Surface of Bifacial Solar Modules: A Modeling Approach,” Scientific Reports, Nature, 2020.

Conclusion

Beyza Durusoy is a highly qualified candidate for the Best Researcher Award, with exceptional contributions to solar energy research. Her strong publication record, international collaborations, and industry-linked projects make her a competitive nominee. Expanding her research impact into commercial applications and grant leadership could further solidify her standing in the field.

 

 

 

Shahid Mehmood | Photovoltaic Devises | Best Researcher Award

Dr. Shahid Mehmood | Photovoltaic Devises | Best Researcher Award

Secondary School Teacher of Elementry and Secondry Education Department KPK Pakistan, Pakistan.

Dr. Shahid Mehmood is a dedicated physicist and materials scientist with a Ph.D. in Physics. His research encompasses theoretical and experimental investigations into the structural, electronic, and magnetic properties of materials. Dr. Mehmood specializes in using advanced computational techniques like density functional theory (DFT) and first-principles calculations to study material behaviors. His expertise includes X-ray diffraction (XRD), scanning electron microscopy (SEM), and optical spectroscopy for material characterization. Dr. Mehmood is skilled in utilizing computational software such as VASP, Quantum Espresso, and Materials Studio for simulations and data analysis.  With a strong publication record in reputable journals, Dr. Mehmood actively contributes to the fields of condensed matter physics and theoretical chemistry. He is known for his collaborative spirit and interdisciplinary approach to research, aiming to advance scientific understanding and technological applications in materials science.

Professional Profiles:

Education

Dr. Shahid Mehmood is an accomplished physicist with a diverse educational background. He obtained his Ph.D. in Physics from the University of Malakand, Pakistan, graduating with a commendable CGPA of 3.50/4.00 in June 2023. Prior to his doctoral studies, Dr. Mehmood completed an M.Phil. in Physics at the same institution, achieving a CGPA of 3.44/4.00. His academic journey began with a Bachelor of Science degree in Physics from the University of Malakand, where he maintained a CGPA of 3.34/4.00 from September 2009 to March 2014. Throughout his educational pursuits, Dr. Mehmood demonstrated a strong commitment to academic excellence and research. His educational background has equipped him with a solid foundation in physics, preparing him for a successful career in scientific research and academia.

Professional Experience

Dr. Shahid Mehmood has demonstrated remarkable versatility and dedication through his professional experiences. As Secretary of the Village Council in Lower Dir, Khyber Pakhtunkhwa, Pakistan, he actively contributed to rural development and governance initiatives. His role involved engaging with local communities, implementing development projects, and addressing community needs. Additionally, Dr. Mehmood’s experience as a certified teacher at Government High School, Adam Dherai, and Government Higher Secondary School, Maskini, reflects his passion for education and effective communication skills. He successfully engaged students, communicated complex concepts, and fostered a positive learning environment. These experiences underscore Dr. Mehmood’s commitment to community service, education, and leadership. They complement his academic achievements, demonstrating a well-rounded approach to professional endeavors and a strong foundation for contributing meaningfully to society.

Research Interest

Dr. Shahid Mehmood’s research interests encompass several areas of materials science and condensed matter physics. He is particularly focused on investigating the structure stability, electronic properties, and optical behavior of crystalline compounds, especially perovskites and thin films. His work includes exploring the thermoelectric and magnetic properties of materials for renewable energy applications and energy storage. Within these fields, Dr. Mehmood is engaged in studying the structural transitions and phase behaviors induced by material modifications, such as substitution and doping. His research aims to contribute to the development of advanced materials for electronic devices, optoelectronic applications, and magnetic functionalities. By combining theoretical studies with experimental validations, Dr. Mehmood seeks to uncover fundamental insights into material behavior at the atomic and electronic levels. His interdisciplinary approach underscores a commitment to advancing knowledge and addressing key challenges in materials science.

Award and Honors

Dr. Shahid Mehmood has been recognized with prestigious awards during his academic journey. Notably, he received a Laptop from Nawy Sahar Schemes for his outstanding performance as a Talented Student during his Bachelor’s studies at the University of Malakand, Chakdara, Pakistan in 2012. Subsequently, he was awarded another Laptop under the PM Laptop Schemes in recognition of his merit-based achievements during his M.Phil. and Ph.D. studies at the same university in 2016 and 2020, respectively. These honors underscore Dr. Mehmood’s exceptional dedication to academic excellence and research in the field of physics and materials science. His accomplishments reflect his commitment to advancing scientific knowledge and his outstanding contributions to higher education in Pakistan.

Research Skills

Dr. Shahid Mehmood is a skilled researcher with expertise in physics and materials science. He holds a Ph.D. in Physics and has conducted extensive theoretical and experimental research in the field. His research focuses on investigating the structural, electronic, and magnetic properties of materials using advanced computational methods such as density functional theory (DFT) and first-principles calculations. Dr. Mehmood is experienced in employing experimental techniques including X-ray diffraction (XRD), scanning electron microscopy (SEM), and optical spectroscopy to characterize materials and analyze their properties. He is proficient in data analysis and utilizes computational modeling software such as VASP, Quantum Espresso, and Materials Studio for simulations and predictions. Dr. Mehmood has a strong track record of scientific writing, with numerous peer-reviewed publications in esteemed journals. His collaborative approach and interdisciplinary research efforts contribute to the advancement of knowledge in condensed matter physics and theoretical chemistry.

Publications

  1. Publication Title: “Effects of Cobalt Substitution on the Physical Properties of the Perovskite Strontium Ferrite”
    • Authors: Shahid Mehmood, Zahid Ali, Imad Khan, Iftikhar Ahmad
    • Journal: Materials Chemistry and Physics, 196, 222-228
    • Year: 2017
    • Citations: 30
  2. Publication Title: “Electronic structure and magnetic properties of the perovskites SrTmO3 (Tm= Mn, Fe, Co, Tc, Ru, Rh, Re, Os and Ir)”
    • Authors: Uzma Qazi, Shahid Mehmood, Zahid Ali, Imad Khan, Iftikhar Ahmad
    • Journal: Physica B: Condensed Matter, 624, 413361
    • Year: 2022
    • Citations: 29
  3. Publication Title: “First-Principles Study of Perovskite Molybdates AMoO3 (A = Ca, Sr, Ba)”
    • Authors: Somia, S Mehmood, Z Ali, I Khan, F Khan, I Ahmad
    • Journal: Journal of Electronic Materials, 48, 1730-1739
    • Year: 2019
    • Citations: 26
  4. Publication Title: “Effects of Ni Substitution on the Electronic Structure and Magnetic Properties of Perovskite SrFeO3”
    • Authors: S Mehmood, Z Ali, I Khan, I Ahmad
    • Journal: Journal of Electronic Materials, 49, 3780-3790
    • Year: 2020
    • Citations: 21
  5. Publication Title: “Electronic structure, optical and magnetic properties of double Perovskites La2MTiO6 (M= Co, Ni, Cu and Zn)”
    • Authors: S Shah, Z Ali, S Mehmood, I Khan, I Ahmad
    • Journal: Materials Chemistry and Physics, 272, 125050
    • Year: 2021
    • Citations: 17
  6. Publication Title: “Optoelectronic and thermoelectric properties of A3AsN (A = Mg, Ca, Sr and Ba) in cubic and orthorhombic phase”
    • Authors: ZA Hafiz Muhammad Tahir Farid, Abeer Mera, Tahani I. Al-Muhimeed, Abeer A …
    • Journal: Journal of Materials Research and Technology, 13, 1485-1495
    • Year: 2021
    • Citations: 17
  7. Publication Title: “Effects of A-site cation on the physical properties of quaternary perovskites AMn3V4O12 (A= Ca, Ce and Sm)”
    • Authors: S Mehmood, Z Ali, I Khan, I Ahmad
    • Journal: Materials Chemistry and Physics, 254, 123229
    • Year: 2020
    • Citations: 16
  8. Publication Title: “Electronic Structure, Mechanical and Magnetic Properties of the Quaternary Perovskites CaA3V4O12 (A = Mn, Fe, Co, Ni and Cu)”
    • Authors: A Shah, Z Ali, S Mehmood, I Khan, I Ahmad
    • Journal: Journal of Electronic Materials, 49, 1230-1242
    • Year: 2020
    • Citations: 13
  9. Publication Title: “n-Type narrow band gap A3InAs3 (A = Sr and Eu) Zintl phase semiconductors for optoelectronic and thermoelectric applications”
    • Authors: Zainab Mufarreh Elqahtani, Salma Aman, Shahid Mehmood, Zahid Ali, Abid …
    • Journal: Journal of Taibah University for Science, 16 (1), 660-669
    • Year: 2022
    • Citations: 12
  10. Publication Title: “Spin-orbit coupling effect on the optoelectronic and thermoelectric properties of the perovskites A3SnO (A= Ca, Sr and Ba)”
    • Authors: S Naz, Z Ali, S Mehmood, I Khan, I Ahmad
    • Journal: Materials Science in Semiconductor Processing, 132, 105905
    • Year: 2021
    • Citations: 12