Esra Uyar | High entropy alloy | Best Researcher Award

Esra Uyar | High entropy alloy | Best Researcher Award

Assist. Prof. Dr.Esra Uyar , Gazi University , Turkey.

Asst. Prof. Dr. Esra Uyar 🎓🔬 is a dedicated physicist specializing in nuclear sciences and health physics. She earned her Ph.D. in Physics from Gazi University (2022) and holds postgraduate and undergraduate degrees from Ankara University. With expertise in nuclear material accounting, radiation safety, and metrology, she has actively participated in international training programs. Her research focuses on nuclear physics, radiation protection, and heavy ion transport. Passionate about advancing scientific knowledge, she has contributed to various academic and research initiatives. She is affiliated with multiple international research databases, including Scopus, ORCID, and Web of Science. 🌍📚

Publication Profile

Scopus
Google Scholar

Education & Experience

📌 Doctorate – Physics, Gazi University (2018-2022)
📌 Postgraduate – Health Physics, Ankara University (2007-2010)
📌 Undergraduate – Physics, Ankara University (2003-2007)
📌 Researcher – Specialized in nuclear sciences, metrology, and radiation safety
📌 Trainer & Speaker – Conducted training on nuclear safeguards and metrology
📌 Affiliations – Linked with international research platforms like ORCID, Scopus & Web of Science

Suitability Summary

Asst. Prof. Esra Uyar is a distinguished researcher in nuclear physics and radiation detection, making significant contributions to gamma-ray spectrometry, detector efficiency enhancement, and nuclear safeguards. Her expertise spans radiation protection, Monte Carlo simulations, and metrology, with a strong academic foundation and impactful research publications. Given her extensive work in high-precision radiation measurement techniques and nuclear material analysis, she is a strong candidate for the Best Researcher Award.

Professional Development

Asst. Prof.Dr. Esra Uyar 🔬📊 has actively engaged in professional training and workshops to enhance her expertise in nuclear sciences. She has completed vocational training in laboratory calibration, nuclear safeguards, and heavy ion transport systems from institutions such as the Japan Atomic Energy Agency and TÜBİTAK. She has also attended metrology and statistical evaluation workshops, ensuring proficiency in integrated management systems. Through continuous learning, she has developed a strong foundation in nuclear material security, auditing, and measurement uncertainty, significantly contributing to the scientific community. Her professional growth reflects her commitment to advancing nuclear physics and radiation protection. 🌍⚛️

Research Focus

Asst. Prof.Dr. Esra Uyar research revolves around nuclear physics, health physics, and metrology. 🏥⚛️ She explores radiation protection, nuclear material security, and particle transport simulations. Her studies also focus on the impact of ionizing radiation in medical and industrial applications, ensuring safety and efficiency. She has worked extensively on nuclear safeguards and statistical evaluations in metrology, contributing to advancements in quality control and precision measurement. Through international collaborations, she aims to enhance nuclear security standards and refine measurement techniques, bridging the gap between fundamental research and practical applications. Her work is crucial for energy, healthcare, and environmental safety. 🌱🔬

Awards & Honors

🏆 Research Recognition – Featured in Web of Science, Scopus, and ORCID databases
🏆 International Training Participation – Selected for nuclear security training in Japan & Turkey
🏆 Academic Excellence – Ph.D. in Physics from Gazi University with distinction
🏆 Metrology Expertise – Awarded certifications in precision measurement and laboratory calibration
🏆 Nuclear Safety Advocate – Recognized for contributions to nuclear safeguards and security

Publication Top Notes

📖 Spectral interference corrections for the measurement of ²³⁸U in materials rich in thorium by a high-resolution gamma-ray spectrometryD. Yücel, H. Solmaz, A.N. Köse, E. BorApplied Radiation and Isotopes (2009) – Cited by: 41 🔬📡

📖 Investigation of shape effects and dead layer thicknesses of a coaxial HPGe crystal on detector efficiency by using PHITS Monte Carlo simulationM.H. Bölükdemir, E. Uyar, G. Aksoy, H. Ünlü, H. Dikmen, M. ÖzgürRadiation Physics and Chemistry (2021) – Cited by: 29 💻📊

📖 Methods for spectral interference corrections for direct measurements of ²³⁴U and ²³⁰Th in materials by gamma-ray spectrometryH. Yücel, A.N. Solmaz, E. Köse, D. BorRadiation Protection Dosimetry (2010) – Cited by: 27 ⚛️📡

📖 A semi-empirical method for calculation of true coincidence corrections for the case of a close-in detection in γ-ray spectrometryH. Yücel, A. Solmaz, E. Köse, D. BorJournal of Radioanalytical and Nuclear Chemistry (2010) – Cited by: 22 📈⚛️

📖 Correction methodology for the spectral interfering γ-rays overlapping to the analytical peaks used in the analysis of ²³²ThH. Yücel, E. Köse, A.N. Esen, D. BorApplied Radiation and Isotopes (2011) – Cited by: 16 🧪📡

📖 A novel approach in voltage transient technique for the measurement of electron mobility and mobility-lifetime product in CdZnTe detectorsH. Yücel, Ö. Birgül, E. Uyar, Ş. ÇubukçuNuclear Engineering and Technology (2019) – Cited by: 11 ⚙️📊

📖 Investigation of the effect of copper contact pin on efficiency in HPGe detectors using Monte Carlo methodE. Uyar, G. Aksoy, H. Ünlü, M.H. BölükdemirJournal of Instrumentation (2021) – Cited by: 9 📡💻

Jayachandran Jayakumar | Design of Materials and Components | Best Researcher Award

Dr. Jayachandran Jayakumar | Design of Materials and Components | Best Researcher Award

Researcher at National Tsing Hua University, Taiwan

Dr. Jayachandran Jayakumar is a highly accomplished researcher in the field of chemistry, with expertise spanning organic synthesis, catalysis, materials science, and drug discovery. He holds a Ph.D. from National Tsing Hua University, Taiwan, and has undertaken multiple postdoctoral research positions, working under renowned professors in diverse areas such as transition metal-catalyzed reactions, natural product synthesis, and the design of organic materials for OLEDs. His work also includes significant contributions to photocatalysis for energy applications and pharmaceutical R&D, particularly in the large-scale synthesis of drug intermediates. With extensive experience in guiding students and leading research projects, Dr. Jayakumar’s interdisciplinary approach bridges academic research with industrial applications. His innovative work in materials and bioengineering has potential real-world impact, though further emphasis on international collaborations, publications, and patents would bolster his recognition as a leading researcher.

Professional Profile 

Education

Dr. Jayachandran Jayakumar completed his Ph.D. in Chemistry at National Tsing Hua University, Taiwan, in 2014, where his research focused on Rh(III)-catalyzed C–H activation for the synthesis of N-heterocycles and related natural products under the supervision of Prof. Chien-Hong Cheng. Prior to that, he earned an M.Phil. in Organic Chemistry with first-class honors from the University of Madras, India in 2007, where he researched the synthesis and characterization of heterocyclic compounds containing saccharide moieties. He also holds an M.Sc. in General Chemistry and a B.Sc. in Chemistry, both with first-class honors, from the University of Madras. Additionally, Dr. Jayakumar has studied courses in Mandarin to further engage in research opportunities in Taiwan, demonstrating his commitment to both academic excellence and cross-cultural communication.

Professional Experience

Dr. Jayachandran Jayakumar completed his Ph.D. in Chemistry at National Tsing Hua University, Taiwan, in 2014, where his research focused on Rh(III)-catalyzed C–H activation for the synthesis of N-heterocycles and related natural products under the supervision of Prof. Chien-Hong Cheng. Prior to that, he earned an M.Phil. in Organic Chemistry with first-class honors from the University of Madras, India in 2007, where he researched the synthesis and characterization of heterocyclic compounds containing saccharide moieties. He also holds an M.Sc. in General Chemistry and a B.Sc. in Chemistry, both with first-class honors, from the University of Madras. Additionally, Dr. Jayakumar has studied courses in Mandarin to further engage in research opportunities in Taiwan, demonstrating his commitment to both academic excellence and cross-cultural communication.

Research Interest

Dr. Jayachandran Jayakumar’s research interests lie at the intersection of organic synthesis, catalysis, materials science, and drug discovery. He has made significant contributions to the development of transition metal-catalyzed reactions, particularly in C–H activation, to create valuable biologically active compounds and materials. His work extends to the design and synthesis of organic materials for applications in OLEDs, focusing on thermally activated delayed fluorescence (TADF) dopants, charge generation materials, and electron-transporting materials. In the realm of energy applications, Dr. Jayakumar has designed novel polymer photocatalysts for hydrogen evolution under visible light. He is also engaged in developing novel drug and prodrug systems, including NIR-II dyes for bioimaging and tissue engineering, to address medical challenges like liver fibrosis. His interdisciplinary approach bridges chemistry, materials science, and biomedical applications, with a strong focus on sustainable and impactful innovations.

Award and Honor

Dr. Jayachandran Jayakumar’s achievements have been recognized through various awards and honors during his academic and research career. His outstanding research contributions have earned him several research grants from Taiwan’s Ministry of Science and Technology (MOST), enabling him to carry out cutting-edge research in chemistry and materials science. Additionally, Dr. Jayakumar has received accolades for his work in pharmaceutical R&D and organic synthesis, including the successful development of a large-scale synthesis method for Clavulanate Lithium at Shasun Pharmaceutical Industries. While specific awards or distinctions are not detailed in the provided information, his continued recognition in the scientific community, reflected in his postdoctoral positions and the innovative nature of his research, highlights his growing impact in the fields of chemistry, materials, and drug development.

Conclusion

Dr. Jayachandran Jayakumar has a strong and diverse research background, with notable contributions in organic synthesis, catalysis, materials science, and drug discovery. His work has academic, industrial, and pharmaceutical applications, making him a strong contender for the Best Researcher Award. However, to solidify his case, emphasizing high-impact publications, citations, patents, and international collaborations would enhance his profile further.

Publications Top Noted

  1. Title: pH-Responsive β-Glucans-Complexed mRNA in LNPs as an Oral Vaccine for Enhancing Cancer Immunotherapy
    Authors: Luo, P.-K., Ho, H.-M., Chiang, M.-C., Huang, M.-H., Sung, H.-W.
    Year: 2024
    Citation: Advanced Materials, 36(33), 2404830.
  2. Title: Bicarbazole-Benzophenone Based Twisted Donor-Acceptor Derivatives as Potential Blue TADF Emitters for OLEDs
    Authors: Siddiqui, I., Gautam, P., Blazevicius, D., Grigalevicius, S., Jou, J.-H.
    Year: 2024
    Citation: Molecules, 29(7), 1672.
  3. Title: Sterically Crowded Donor-Rich Imidazole Systems as Hole Transport Materials for Solution-Processed OLEDs
    Authors: Kumar, K., Sharma, D., Thakur, D., Jou, J.-H., Ghosh, S.
    Year: 2024
    Citation: Langmuir, 40(10), pp. 5137–5150.
  4. Title: Harnessing HfO2 Nanoparticles for Wearable Tumor Monitoring and Sonodynamic Therapy in Advancing Cancer Care
    Authors: Siboro, P.Y., Sharma, A.K., Lai, P.-J., Chang, Y., Sung, H.-W.
    Year: 2024
    Citation: ACS Nano, 18(3), pp. 2485–2499.
  5. Title: Pyridine-Annulated Functional Fused Indole as a Hole Transport Material for Solution-Processed OLEDs
    Authors: Kumar, K., Kesavan, K.K., Kumar, S., Jou, J.-H., Ghosh, S.
    Year: 2023
    Citation: ACS Applied Optical Materials, 1(12), pp. 1930–1937.
  6. Title: Computational Evaluation with Experimental Validation: Arylamine-Based Functional Hole-Transport Materials for Energy-Efficient Solution-Processed OLEDs
    Authors: Kumar, K., Kesavan, K.K., Kumar, S., Jou, J.-H., Ghosh, S.
    Year: 2023
    Citation: Journal of Physical Chemistry C, 127(37), pp. 18560–18573.
  7. Title: Modifications of Pyridine-3,5-dicarbonitrile Acceptor for Highly Efficient Green-to-Red Organic Light-Emitting Diodes
    Authors: Deng, S.-L., Chen, Y.-K., Lei, J., Wu, T.-L., Cheng, C.-H.
    Year: 2023
    Citation: ACS Applied Materials and Interfaces, 15(28), pp. 33819–33828.
  8. Title: Decorated Pyridine as Hole Transporting Material (HTM) for Solution-Processed OLEDs
    Authors: Kumar, K., Kesavan, K.K., Kumar, S., Jou, J.-H., Ghosh, S.
    Year: 2023
    Citation: Journal of Photochemistry and Photobiology A: Chemistry, 437, 114380.
  9. Title: Main-chain Engineering of Polymer Photocatalysts with Hydrophilic Non-Conjugated Segments for Visible-Light-Driven Hydrogen Evolution
    Authors: Chang, C.-L., Lin, W.-C., Ting, L.-Y., Mochizuki, T., Chou, H.-H.
    Year: 2022
    Citation: Nature Communications, 13(1), 5460.
  10. Title: Solution-Processable Organic Light-Emitting Diodes Utilizing Electroluminescent Perylene Tetraester-Based Columnar Liquid Crystals
    Authors: Dhingra, S., Siddiqui, I., Gupta, S.P., Jou, J.-H., Pal, S.K.
    Year: 2022
    Citation: Soft Matter, 18(46), pp. 8850–8855.