Hanwen Wang | Nanophotonics and Nanoelectronics | Young Scientist Award

Assoc. Prof. Dr. Hanwen Wang | Nanophotonics and Nanoelectronics | Young Scientist Award

Associate Researcher | Liaoning Academy of Materials (LAM) | China

Assoc. Prof. Dr. Hanwen Wang is a leading researcher in two-dimensional materials, van der Waals heterostructures, and nanoelectronic devices, with strong contributions to physical property modulation, memory architectures, and advanced logic integration. His research has resulted in high-impact publications in top-tier journals such as Nature, Nature Communications, Advanced Materials, Light: Science & Applications, and Materials Today Physics, covering topics including anisotropic transport, ferroelectric memories, 3D integrated logic, and superconductivity in 2D systems. According to Scopus, he has published 35 scholarly documents, received 1,922 citations, and holds an h-index of 19, reflecting significant international impact, innovation, and recognition in nanomaterials and nanoelectronics research.

Citation Metrics (Scopus)

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1922

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35

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19

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Featured Publications

Suresh Kumar Jakka | Nanophotonics and Nanoelectronics | Best Researcher Award

Dr. Suresh Kumar Jakka | Nanophotonics and Nanoelectronics | Best Researcher Award

Post-Doctoral Fellow | University of Aveiro | Portugal

Dr. Suresh Kumar Jakka is an accomplished materials physicist with a strong research focus on luminescent and functional materials, rare-earth-doped glasses and ceramics, upconversion nanomaterials, optical thermometry, bioactive glasses, and photonic materials for energy, sensing, and biomedical applications. His scholarly output comprises 89 peer-reviewed publications across high-impact Q1 and Q2 journals, conference proceedings, edited volumes, and book chapters, reflecting sustained contributions to spectroscopy, nanophotonics, solid-state physics, and advanced materials research. With over 2,700 citations, an h-index of 29, and an i10-index of 56, his work demonstrates significant international visibility and influence. He has contributed to interdisciplinary R&D projects, including funded national and international research initiatives, and has advanced innovation in optical materials, phosphors, perovskites, thin films, and biofunctional nanocomposites. His research contributions extend to editorial roles, peer-review service for leading journals, conference leadership, and recognition through competitive research awards and scientific honors.

Citation Metrics (Google Scholar)

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2700

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89

h-index
29

i10index
56

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Featured Publications

Rami Ahmad El-Nabulsi | Nanophotonics and Nanoelectronics | NanoPhotonics Pioneer Award

Prof. Dr. Rami Ahmad El-Nabulsi | Nanophotonics and Nanoelectronics | NanoPhotonics Pioneer Award

Professor | Czech Education and Scientific Network(CESNET) | Czech Republic

Prof. Dr. Rami Ahmad El-Nabulsi is a highly prolific theoretical scientist with a distinguished global research profile reflected by 6,964 citations, 386 scholarly documents, an h-index of 43, and an i10-index of 201. His research contributions span theoretical and mathematical physics, applied mathematics, and interdisciplinary modeling, with a strong emphasis on nonlocal, fractional, and fractal frameworks. He has authored several hundred peer-reviewed journal articles published in high-impact international journals, addressing complex problems in quantum dynamics, nonlinear systems, fractal and fractional calculus, quantum field theory, condensed matter physics, superconductivity, plasma and nuclear physics, fluid dynamics, astrophysics, and space science. His work is widely recognized for introducing innovative mathematical operators, generalized Lagrangian and Hamiltonian formalisms, and fractal-based models that advance understanding of classical and quantum phenomena across multiple length scales. Prof. Dr. Rami Ahmad El-Nabulsi has also made notable contributions to applied domains including energy systems, nanomaterials, biophysics, biomedical heat transfer, geophysics, and ocean and atmospheric dynamics. In addition to extensive journal publications, his scholarly output includes books, conference proceedings, and invited research papers. He is internationally acknowledged for research excellence through prestigious awards and recognitions, serves as an editor and editorial board member for numerous reputed journals, acts as a reviewer for a very large number of international journals, and frequently contributes as a conference chair, keynote speaker, and scientific committee member, underscoring his sustained impact, innovation, and leadership in global research.

Profiles: Scopus | ORCID | Google Scholar | ResearchGate | Sci Profiles | Loop

Featured Publications

1. El-Nabulsi, R. A., & Torres, D. F. M. (2008). Fractional action-like variational problems. Journal of Mathematical Physics, 49(5), 053521.

2. El-Nabulsi, R. A. (2005). A fractional approach to non-conservative Lagrangian dynamical systems. FIZIKA A, 14(4), 289–298.

3. El-Nabulsi, R. A., & Torres, D. F. M. (2007). Necessary optimality conditions for fractional action-like integrals of variational calculus with Riemann–Liouville derivatives of order (α, β). Mathematical Methods in the Applied Sciences, 30(15), 1931–1939.

4. El-Nabulsi, R. A. (2005). A fractional action-like variational approach of some classical, quantum and geometrical dynamics. International Journal of Applied Mathematics, 17, 299–317.

5. El-Nabulsi, R. A. (2013). Non-linear dynamics with non-standard Lagrangians. Qualitative Theory of Dynamical Systems, 12(2), 273–291.

Sunkook Kim | Nanophotonics and Nanoelectronics | Best Researcher Award

Prof. Dr. Sunkook Kim | Nanophotonics and Nanoelectronics | Best Researcher Award

Professor | Sungkyunkwan University | South Korea

Prof. Dr. Sunkook Kim is an internationally recognized scientist whose pioneering contributions lie at the intersection of 2D materials, nanoelectronics, and flexible device engineering. With over 9,566 citations, 231 publications, and an h-index of 46, his research has profoundly influenced advanced materials and next-generation electronic systems. His work encompasses high-mobility transistors, flexible OLED and micro-LED displays, nanostructured memristors, neuromorphic sensors, and anticounterfeiting technologies based on MoS₂, WS₂, and transition metal dichalcogenides (TMDs). His studies have been featured in Nature Electronics, Nature Communications, Advanced Materials, ACS Nano, and Advanced Functional Materials, many highlighted as cover articles, reflecting the high impact of his research. Prof. Dr. Sunkook Kim’s R&D achievements bridge fundamental material synthesis and device integration, leading innovations in stretchable electronics, haptic feedback systems, and large-area 2D semiconductor devices. He has developed laser-assisted fabrication techniques and MoS₂-based biosensors for healthcare and optoelectronic applications, fostering sustainable and low-power device technologies. A recipient of the Korean President’s Young Scientist Award and the Scientist of the Month Award by the National Research Foundation of Korea, he has earned national recognition for his research excellence. His academic leadership extends to editorial board service, peer reviewing for top-tier journals, and conference chairing in nanotechnology and materials science forums. Prof. Dr. Sunkook Kim’s laboratory at Sungkyunkwan University is a hub of interdisciplinary collaboration, supported by multiple national and industrial funding projects, advancing Korea’s competitiveness in nanomaterials research and flexible electronics. His continuing innovations are redefining frontiers in next-generation semiconductors, photonic devices, and intelligent sensing systems.

Profiles: Scopus | ORCID | Google Scholar | ResearchGate | Sci Profiles | IEEE Xplore

Featured Publications

1. Kim, S., Konar, A., Hwang, W. S., Lee, J. H., Lee, J., Yang, J., Jung, C., Kim, H., … (2012). High-mobility and low-power thin-film transistors based on multilayer MoS₂ crystals. Nature Communications, 3(1), 1011.

2. Choi, W., Cho, M. Y., Konar, A., Lee, J. H., Cha, G. B., Hong, S. C., Kim, S., Kim, J., … (2012). High‐detectivity multilayer MoS₂ phototransistors with spectral response from ultraviolet to infrared. Advanced Materials, 24(43), 5832–5836.

3. Liu, N., Kim, P., Kim, J. H., Ye, J. H., Kim, S., & Lee, C. J. (2014). Large-area atomically thin MoS₂ nanosheets prepared using electrochemical exfoliation. ACS Nano, 8(7), 6902–6910.

4. Kim, S., Kwon, H. J., Lee, S., Shim, H., Chun, Y., Choi, W., Kwack, J., Han, D., … (2011). Low-power flexible organic light-emitting diode display device. Advanced Materials, 23(31), 3511–3516.

5. Lee, J., Dak, P., Lee, Y., Park, H., Choi, W., Alam, M. A., & Kim, S. (2014). Two-dimensional layered MoS₂ biosensors enable highly sensitive detection of biomolecules. Scientific Reports, 4(1), 7352.

 

Shang Zhou | Nanophotonics and Nanoelectronics | Best Researcher Award

Mr. Shang Zhou | Nanophotonics and Nanoelectronics | Best Researcher Award

Graduate Student | Gannan Medical University | China

Mr. Shang Zhou is an emerging researcher whose academic pursuits converge at the intersection of medicine, nanomaterials, and semiconductor physics. His core research focus lies in investigating contact characteristics, interface modulation, and the physical mechanisms of van der Waals heterostructures, particularly those involving graphene and gallium nitride (GaN). By integrating theoretical modeling and experimental validation, his work aims to enhance the performance of electronic and optoelectronic devices through optimized heterojunction structures. His major research contribution includes the project “Research on the Contact Characteristics of Graphene/GaN Heterojunction,” which explores how GaN crystal orientation and surface conditions influence contact behaviors in graphene-based systems. This study offers insights into the design of next-generation semiconductor and nanodevice architectures. His publication in Applied Surface Science (SCI-indexed, Vol. 713, 2025) further underscores his role in bridging fundamental materials science with practical device engineering. Mr. Shang Zhou’s innovative capacity is reflected in his extensive intellectual property portfolio, comprising 12 patents—including several invention patents on graphene/GaN interface regulation methods, semiconductor cleaning technologies, and adhesive removal techniques. His patents also extend to applied innovations such as anti-drowning self-rescue devices and photoelectric sensor systems, demonstrating his versatility and translational approach to technology development. Additionally, he holds two software copyrights related to digital safety education and dispute mediation platforms, showcasing his interdisciplinary engagement across science and societal applications. His Scopus metrics indicate 4 research documents with 3 citations and an h-index of 1, representing early yet promising contributions in high-impact research domains. Through his continuous work in nanostructured materials, heterojunction device optimization, and applied nanotechnology, Mr. Shang Zhou exemplifies a researcher dedicated to advancing the frontiers of semiconductor interface physics and nanomaterial-based biomedical engineering.

Profiles: Scopus | ORCID | Scilit

Featured Publications

1. Zhou, S., Meng, Y., Li, J., Cheng, Y., Bao, X., Wang, Z., Deng, H., Yang, Y., Chen, P., Chen, Y., Ouyang, F., Wang, Q., & Zhong, H. (2025). The impact of GaN crystal orientation on the contact properties of single-layer graphene/GaN: A theoretical and experimental study. Applied Surface Science, 713, 164305.

2. Meng, Y., Du, X., Zhou, S., Li, J., Feng, R., Zhang, H., Xu, Q., Zhao, W., Liu, Z., & Zhong, H. (2024). Investigation of persistent photoconductivity of gallium nitride semiconductor and differentiation of primary neural stem cells. Molecules, 29(18), 4439.

Dr. Yuki Yoshimatsu | Nanoscale | Women Researcher Award

Dr. Yuki Yoshimatsu | Nanoscale | Women Researcher Award

Dr. Yuki Yoshimatsu at Tochigi Cancer Center, Japan

Dr. Yuki Yoshimatsu is a leading cancer biologist and Project Leader at the Tochigi Cancer Center Research Institute, Japan. She holds a Ph.D. in Medical Science from the University of Tokyo and has extensive experience in rare cancer research, particularly sarcomas. Her career includes senior roles at the National Cancer Center Research Institute in Tokyo and postdoctoral training at the University of Washington, USA. Her research focuses on patient-derived cancer models, drug sensitivity screening, kinomic profiling, and biomarker discovery for precision oncology. She has established over 100 rare cancer models and contributed to national clinical guidelines. Dr. Yoshimatsu is also committed to mentoring young female scientists and advancing translational oncology through international collaboration.

Professional Profile:

ORCID

Summary of Suitability for Women Researcher Award: Dr. Yuki Yoshimatsu

Dr. Yuki Yoshimatsu exemplifies excellence in biomedical research and leadership in translational oncology, making her a highly deserving candidate for the Women Researcher Award. With a Ph.D. in Medical Science from the University of Tokyo and extensive research experience at prestigious institutions including the National Cancer Center Japan and the University of Washington, Dr. Yoshimatsu has established herself as a leading figure in rare cancer biology.

🎓 Education

Ph.D. in Medical Science
🏛️ University of Tokyo, Graduate School of Medicine
🧬 Department of Pathology
📍 Tokyo, Japan

💼 Professional Experience

Project Leader
🏥 Tochigi Cancer Center Research Institute
📍 Tochigi, Japan | ⏳ 2022 – Present
🔬 Leading translational research in rare cancers and biomarker development

Senior Researcher
🧪 National Cancer Center Research Institute
📍 Tokyo, Japan | ⏳ 2016 – 2022
🧫 Established multiple patient-derived sarcoma models and conducted drug sensitivity profiling

Postdoctoral Fellow
🧬 University of Washington, Dept. of Otolaryngology
📍 Seattle, WA, USA | ⏳ 2012 – 2016
🌎 International research in viral oncogenesis and multi-step carcinogenesis

🧪 Research Interests

🧫 Rare cancers (esp. sarcomas)

🧬 Patient-derived cancer models (cell lines, organoids, xenografts)

💊 Drug sensitivity screening & kinomic profiling

🧠 Biomarker discovery for precision oncology

🦠 Viral oncogenesis & multi-step carcinogenesis

🏆 Honors & Awards

🥇 Best Presentation Award
“Establishment and characterization of a novel leiomyosarcoma cell line”
📅 Aug 2023 | 🧬 Japanese Society of Human Cell Science

🏅 Poster Award
“Construction of patient-derived sarcoma models”
📅 Nov 2021 | 🔬 Japan Society for Patient-Derived Cancer Models

🌍 International Research Grant
“Mechanisms of multi-step carcinogenesis in cervical cancer”
📅 Mar 2010 | 🧪 Kanzawa Medical Research Promotion Foundation

Publication Top Notes

Pharmacokinomic Profiling Using Patient-Derived Cell Lines Predicts Sensitivity to Imatinib in Dermatofibrosarcoma Protuberans

Establishment and characterization of two novel patient-derived cell lines from giant cell tumor of bone: NCC-GCTB8-C1 and NCC-GCTB9-C1

 

Prof. Taehui Na | NanoElectronics Awards | Best Researcher Award

Prof. Taehui Na | NanoElectronics Awards | Best Researcher Award

Prof. Taehui Na, Incheon National University, South Korea

Dr. Na Taehui is an Associate Professor in the Department of Electronics Engineering at Incheon National University, where he has been since September 2023, after serving as an Assistant Professor from 2019 to 2023. He earned his Ph.D. in Electrical and Electronic Engineering from Yonsei University in February 2017, focusing on optimal reference and offset-tolerant sensing schemes for deep submicrometer STT-RAM. Dr. Na has a robust professional background, having previously worked as a Staff Engineer at Samsung Electronics. His research interests encompass various aspects of memory technology, including spin-transfer-torque MRAM and computing-in-memory systems, with multiple publications in esteemed journals. Throughout his academic journey, he has received several accolades, including the BK21 Outstanding Student Fellow Award and the Samsung Scholarship

Professional Profile:

Google Scholar

Summary of Suitability:

Dr. Na Taehui is a commendable candidate for the Best Researcher Award due to his significant contributions to the field of electronics engineering, particularly in memory technology. As an Associate Professor in the Department of Electronics Engineering at Incheon National University, he has demonstrated a commitment to both education and research since September 2023, following a successful tenure as an Assistant Professor from 2019 to 2023.

🎓Education:

Dr. Na Taehui earned his Ph.D. in Electrical and Electronic Engineering from Yonsei University, Seoul, Korea, in February 2017. His dissertation, titled “Optimal Reference Scheme and Offset Tolerant Sensing Scheme for Deep Submicrometer STT-RAM,” focused on advancing memory technology. Prior to this, he completed his Bachelor of Science in Electrical and Electronic Engineering at the same institution, graduating in February 2012.

🏢Work Experience:

Dr. Na Taehui is currently serving as an Associate Professor in the Department of Electronics Engineering at Incheon National University, a position he has held since September 2023. Prior to this role, he was an Assistant Professor in the same department from September 2019 to August 2023. Before entering academia, Dr. Na worked as a Staff Engineer in the Flash Design Team of the Memory Division at Samsung Electronics from March 2017 to August 2019.

🏅Awards:

Dr. Na Taehui has received several prestigious awards throughout his academic career, including the BK21 Outstanding Student Fellow Award from Yonsei University in 2015. He was also a recipient of the Samsung Scholarship from 2014 to 2017, supporting his doctoral studies. Additionally, Dr. Na was awarded Research Assistantships at Yonsei University in 2012, 2013, and 2014. He consistently excelled in his studies, earning the Highest Honors from Yonsei University in both 2010 and 2011.

🔬Research Focus:

Dr. Na’s research primarily focuses on memory technology, with a particular emphasis on Spin-Transfer-Torque (STT) MRAM and computing-in-memory systems. He is dedicated to developing optimal reference and offset-tolerant sensing schemes for advanced memory applications, aiming to enhance performance and efficiency. His contributions to the field are well-documented through multiple articles published in high-impact journals, further advancing the understanding of electronics and memory technologies.

Publication Top Notes:

  1. Comparative Study of Various Latch-Type Sense Amplifiers
    • Cited by: 104
  2. STT-MRAM Sensing: A Review
    • Cited by: 79
  3. A 10T-4MTJ Nonvolatile Ternary CAM Cell for Reliable Search Operation and Compact Area
    • Cited by: 64
  4. Reference-Scheme Study and Novel Reference Scheme for Deep Submicrometer STT-RAM
    • Cited by: 54
  5. Offset-Canceling Current-Sampling Sense Amplifier for Resistive Nonvolatile Memory in 65 nm CMOS
    • Cited by: 51

 

 

 

Dr. Eman Helmy Ahmed Abdelmonaim | Nanoelectronics Awards | Best Researcher Award

Dr. Eman Helmy Ahmed Abdelmonaim | Nanoelectronics Awards | Best Researcher Award

Dr. Eman Helmy Ahmed Abdelmonaim , National Research Centre NRC, Egypt

Dr. Eman Helmy is a researcher at the National Research Centre, Egypt, specializing in polymer science and nanotechnology. She earned her B.Sc. in Chemistry from Al Azhar University in 2005, followed by an M.Sc. in Organic Chemistry from Cairo University in 2014, and a Ph.D. in Chemistry from Ain Shams University and Siegen University in 2019. Her doctoral research focused on polymeric materials embedded in nano-structured oxides for industrial applications. Dr. Helmy has undertaken significant research training and postdoctoral work at Siegen University, ICFO in Barcelona, and the COMSTECH Centre in Indonesia. Her expertise includes advanced spectroscopic techniques, nanomaterials, and polymeric composites. She has also completed extensive training in areas such as nano safety, GIS, and scientific writing.

Professional Profile:

Google Scholar 

Suitability for the Research for Best Researcher Award: Eman Helmy Ahmed Abdel Monaim

Summary of Suitability:

Eman Helmy Ahmed Abdel Monaim is a highly qualified candidate for the Research for Best Researcher Award due to her significant contributions to the field of Chemistry, particularly in polymer science and nanotechnology. Her achievements in research, her extensive academic background, and her international collaborations make her an exemplary candidate for this award.

🎓Education:

Dr. Eman Helmy’s educational journey began with her high school education at Al-Mostaqbal Language School in Nasr City, Egypt, from 2000 to 2001. She then pursued a B.Sc. in Chemistry at the Faculty of Science, Al Azhar University, graduating in 2005 with honors, achieving a Very Good grade with the first degree of Honor. In October 2008, Dr. Helmy continued her studies with graduate courses in Organic Chemistry at Cairo University. She completed her M.Sc. in Organic Chemistry in March 2014 at Cairo University, with a thesis focused on the “Preparation and characterization of some polymeric nanocomposites for electrical applications.” Her academic journey culminated in May 2019 with a Ph.D. in Chemistry, a joint supervision between Ain Shams University, Egypt, and Siegen University, Germany. Her doctoral research explored the “Preparation of some polymeric materials embedded in nano-structured oxides using sol–gel technique for some industrial applications.”

🏢Work Experience:

Dr. Eman Helmy’s career began as a Research Assistant at the Faculty of Science, Al Azhar University from 2005 to 2008. She then joined the National Research Centre, Chemical Industries Research Division, as a Researcher from 2008 to 2014. During this period, she also undertook a one-year research fellowship at Siegen University, Germany, as part of her Ph.D. studies. From 2014 to 2019, Dr. Helmy continued her role as a Researcher at the National Research Centre, this time within the Polymer Science and Solid State Physics Department. Following her Ph.D., she served as a Postdoctoral Research Fellow at the Institute of Photonic Science (ICFO) in Barcelona, Spain, from 2019 to 2020. Since 2020, Dr. Helmy has been a Researcher at the National Research Centre, focusing on the Chemical Industries Research Division’s Lab of Advanced Materials and Nanotechnology Group, Centre of Excellence.

🏆Awards and Honors:

Dr. Eman Helmy’s M.Sc. thesis, focused on polymeric nanocomposites for electrical applications, was recognized for its high quality by Prof. Dr. Patricia Heiden from Michigan Technological University, USA. She has also received prestigious scholarships and fellowships for her postdoctoral research at the Institute of Photonic Science (ICFO) in Barcelona, Spain, and the COMSTECH Centre in Indonesia. Additionally, Dr. Helmy is acknowledged for her extensive training in advanced spectroscopic techniques, nano safety, Geographic Information Systems (GIS), and scientific writing.

Publication Top Notes:

 

 

Prof. Dr. Plamen Petkov | Nanoelectronics Awards | Best Researcher Award

Prof. Dr. Plamen Petkov | Nanoelectronics Awards | Best Researcher Award

Prof. Dr. Plamen Petkov , UCTM , Bulgaria

Plamen Petkov, a Bulgarian national born on January 8, 1959, is a distinguished Professor of Physics at the University of Chemical Technology and Metallurgy in Sofia, Bulgaria. With a career spanning from 1985 to the present, he currently serves as the Head of the Thin Films Technology Laboratory and the Physics Department. Petkov holds a Dipl. Eng. (MSc in Semiconductors) from UCTM Sofia and a PhD in Solid State Physics. His extensive experience includes research stints at RWTH Aachen and the University of Odense, specializing in Thin Film Technology. A prolific author, Petkov has published six books and over 165 papers. He is a member of several scientific societies and has coordinated numerous research projects and academic programs. Additionally, he is the Editor in Chief of the journal “Advance in Natural Science: Theory and Applications.” His scientific interests focus on chalcogenide thin films, nanostructured materials, and energy and optical storage.

Professional Profile:

Google Scholar

📚Education:

Plamen Petkov holds an MSc in Semiconductors from the University of Chemical Technology and Metallurgy in Sofia, Bulgaria (1976-1981). He further specialized in Thin Film Technology at the Physics Department of RWTH Aachen in Germany (1993-1995) and earned a PhD in Solid State Physics from the same university in 1995. Additionally, he undertook specialization in Thin Film Technology at the University of Odense in Denmark (1998-1999) and Thin Films at the University of Aachen in Germany (2001-2002)

🏢🔬Work Experience:

Plamen Petkov has been an integral part of the University of Chemical Technology and Metallurgy in Sofia, Bulgaria since 1985. Initially starting as a Researcher and Professor in Physics, his expertise in the field has been instrumental in shaping the academic landscape. Since 2000, he has taken on the role of Head of Laboratory at the Thin Films Technology Lab, where his leadership has propelled research endeavors forward. Additionally, since 2009, he has assumed the responsibility of leading the Physics Department, overseeing its academic and administrative facets. In these roles, Plamen has been pivotal in supervising research initiatives, contributing to the faculty board and academic council, and spearheading numerous national and international research projects. His commitment to academic excellence is further demonstrated through his supervision of Ph.D. and M.S. theses, ensuring the growth and development of future scientists in the field.

Publication Top Notes:

  1. Title: An interpretation of optical properties of oxides and oxide glasses in terms of the electronic ion polarizability and average single bond strength
    • Published Year: 2010
    • Journal: J. Univ. Chem. Technol. Metall
    • Cited By: 523
  2. Title: Measurement of the cross section and angular correlations for associated production of a Z boson with b hadrons in pp collisions at √s = 7 TeV
    • Published Year: 2013
    • Journal: Journal of High Energy Physics
    • Cited By: 214*
  3. Title: Electrode-limited currents in the thin-film MGeSeM system
    • Published Year: 1989
    • Journal: Materials Chemistry and Physics
    • Cited By: 198
  4. Title: Measurement of the associated production of a single top quark and a Z boson in pp collisions at √s= 13 TeV
    • Published Year: 2018
    • Journal: Physics Letters B
    • Cited By: 132
  5. Title: Suppression of γ and Z production in PbPb collisions at √s= 2.76 TeV
    • Published Year: 2017
    • Journal: Physics Letters B
    • Cited By: 123

 

 

 

Mr. Halil SEYMEN | Nanoelectronics Awards | Best Researcher Award

Mr. Halil SEYMEN | Nanoelectronics Awards | Best Researcher Award

Mr. Halil SEYMEN , Muş Alparslan Universty , Turkey

Halil Seymen is a dedicated academic and researcher with extensive experience in the field of material science and engineering. Holding a Ph.D. from Kahramanmaraş Sütçü İmam University and having pursued doctoral studies at Bingöl University, his research focuses on optoelectronic materials and semiconductor physics. With a background in physics from Yüzüncü Yıl University and Atatürk University, Halil has contributed significantly to the field through his work as a lecturer at Muş Alparslan University. His research, which includes investigations into the electrical and photonic properties of semiconductor structures, has been published in reputable journals. Halil’s expertise extends to teaching, where he shares his knowledge and passion for physics with students, and he actively engages in academic activities to further scientific understanding and technological advancement.

Professional Profile:

Scopus

Orcid

📚 Education:

Halil Seymen’s academic journey reflects a commitment to advancing knowledge in the fields of physics and material science. He holds a Ph.D. in Material Science and Engineering from Kahramanmaraş Sütçü İmam University, Turkey, where he delved into the intricate realms of materials and their engineering applications. Prior to this, he pursued a Ph.D. in Physics at Bingöl University, Turkey, further enriching his understanding of fundamental physical principles. Halil’s educational foundation includes a Master of Science (M.Sc) degree in Physics from Yüzüncü Yıl University and a Bachelor of Science (B.Sc) in Physics from Atatürk University, both in Turkey. This diverse educational background has equipped him with a comprehensive grasp of both theoretical concepts and practical applications in the fields of physics and material science. Through his academic pursuits, Halil Seymen continues to contribute to the advancement of scientific knowledge and technological innovation.

👨‍🏫 Work Experience:

Halil Seymen has played pivotal roles in both academia and education in Turkey. Currently serving as an Assistant Professor at Muş Alparslan University, he contributes to the academic landscape by imparting knowledge and mentoring students in his areas of expertise. Prior to this, Halil worked as a Teacher for the Ministry of National Education in Turkey, where he played a vital role in shaping the educational experiences of students. His dedication to both teaching and research underscores his commitment to fostering intellectual growth and contributing to the development of future generations.

🔬 Research Focus:

Halil Seymen’s research interests encompass a wide array of cutting-edge topics within the realm of materials science and engineering. His expertise spans across diverse fields, including optoelectronic materials, polymer materials, graphene oxide, and nanomaterials. With a focus on experimental solid-state physics, Halil explores the fundamental properties and behaviors of materials at the atomic and molecular levels. His research endeavors aim to advance our understanding of material properties and pave the way for the development of innovative technologies with applications in various industries. Through his multidisciplinary approach, Halil Seymen contributes significantly to the advancement of material science and engineering.

Publication Top Notes:

  1. Investigation of electrical, photodiode and photovoltaic properties of Au/SiO2/n-Si structures with GO and P3C4MT interface
    Seymen, H., Karataş, S.
    Materials Chemistry and Physics, 2023, 310, 128449.
    Citations: 1
  2. Effect of illumination intensity on the electrical characteristics of Au//SiO2/n-type Si structures with GO and P3C4MT interface layer
    Seymen, H., Berk, N., Orak, İ., Karataş, Ş.
    Journal of Materials Science: Materials in Electronics, 2022, 33(24), pp. 19656–19666.
    Citations: 9
  3. The structural and optical properties of GO: Temperature-dependent analysis of the electrical properties of Al/GO/p-type Si semiconductor structures
    Berk, N., Seymen, H., Orak, İ., Karataş, Ş.
    Journal of Physics and Chemistry of Solids, 2022, 160, 110348.
    Citations: 14
  4. The electrical characteristics of metal–semiconductor hetero-structures with graphene oxide and perylenetetracarboxylic dianhydride interface
    Berk, N., Seymen, H., Orak, I., Karataş, Ş.
    Journal of Materials Science: Materials in Electronics, 2021, 32(13), pp. 17500–17511.
    Citations: 11
  5. Study on preparation of graphene oxide thin film layers: the electrical and dielectric characteristics of Au/GO/n-type Si junction structures
    Kılçık, A., Berk, N., Seymen, H., Karataş, Ş.
    Journal of Materials Science: Materials in Electronics, 2021, 32(6), pp. 7913–7925.
    Citations: 17