Dr. Abhishek Chatterjee – Semiconductor Materials and Devices – Best Researcher Award

Dr. Abhishek Chatterjee - Semiconductor Materials and Devices - Best Researcher Award

Raja Ramanna Centre for Advanced Technology - India

AUTHOR PROFILE

GOOGLE SCHOLAR

EARLY ACADEMIC PURSUITS šŸŽ“

Abhishek Chatterjee's academic journey began with a Bachelor of Science (B.Sc.) in Physics, Chemistry, and Mathematics from the University of North Bengal, where he distinguished himself by securing a University Medal for his academic excellence. He furthered his studies with a Master of Science (M.Sc.) in Physics, specializing in Condensed Matter Physics at Jadavpur University. His passion for semiconductor physics led him to pursue a Master of Technology (M.Tech.) at Homi Bhabha National Institute, Mumbai, focusing on the electrical characterization of nitride epitaxial layers. Abhishek culminated his academic training with a Ph.D. in Physics, with a thesis on electronic transport studies on GaN epitaxial layers for fabricating radiation-hard ultraviolet photodetectors.

PROFESSIONAL ENDEAVORS šŸ¢

Since 2012, Abhishek has been serving as a Scientific Officer at the Raja Ramanna Centre for Advanced Technology (RRCAT) in Indore, India. His role involves extensive research and development in the field of semiconductor materials and devices. Abhishek has made significant contributions to the growth and characterization of III-V and nitride semiconductors, utilizing advanced techniques such as Metal-Organic Chemical Vapor Phase Deposition (MOCVD) and Molecular Beam Epitaxy (MBE). His expertise extends to various fabrication processes, including photolithography, etching, and thin-film deposition, highlighting his comprehensive skills in semiconductor device development.

CONTRIBUTIONS AND RESEARCH FOCUS šŸ”¬

Abhishek's research is deeply rooted in the physics of III-V, III-N, and ultra-wide band gap semiconductors. His work primarily revolves around the epitaxial growth of these materials, exploring their optoelectronic properties, and investigating the interfaces of metal/semiconductor and Semiconductor Materials and Devices metal/oxide/semiconductor junctions. He has developed optoelectronic and photonic devices with applications in advanced technology. His doctoral research on GaN epitaxial layers has provided valuable insights into electronic transport mechanisms and radiation hardness, which are crucial for developing high-performance ultraviolet photodetectors.

ACCOLADES AND RECOGNITION šŸ…

Abhishek's contributions have been recognized with several awards and honors. Notably, he received the Best Thesis Award at the 30th DAE-BRNS National Laser Symposium, organized by the Indian Laser Association and BARC. He has also been acknowledged as an Outstanding Reviewer by prestigious international journals, including Materials Research Express and Semiconductor Science and Technology. His work on Semiconductor Materials and Devices dislocation-limited electronic transport in GaN templates was featured in Semiconductor Today Magazine, underscoring his impact in the field of semiconductor research.

IMPACT AND INFLUENCE 🌟

Abhishek's research has significantly impacted the field of optoelectronics and semiconductor physics. His studies on wide band gap semiconductors have advanced our understanding of material properties and device performance, paving the way for new applications in Semiconductor Materials and Devices radiation-hard electronics and photodetectors. His expertise in growth techniques and device fabrication has been instrumental in pushing the boundaries of semiconductor technology, contributing to the development of cutting-edge technologies.

LEGACY AND FUTURE CONTRIBUTIONS šŸ”®

Abhishek Chatterjee's legacy in the field of semiconductor research is marked by his pioneering work on GaN epitaxial layers and their applications in optoelectronic devices. As a life member of the Indian Laser Association, he continues to be an active contributor to the scientific community. Abhishek's future work promises to delve deeper into the complexities of semiconductor physics, exploring new materials and device architectures that will shape the next generation of optoelectronic technologies. His commitment to excellence and innovation ensures that his contributions will have a lasting impact on the field.

NOTABLEĀ  PUBLICATIONS

Dislocation-assisted tunnelling of charge carriers across the Schottky barrier on the hydride Ā  2015(25)

Role of threading dislocations and point defects in the performance of GaN-based metal-semiconductor-metal 2020(15)

Effect of 60Co γ-irradiation on the nature of electronic transport in heavily doped n-type GaN based Schottky photodetectors 2018(14)

Dislocations limited electronic transport in hydride vapour phase epitaxy grown GaN templates:Ā  Ā 2015(13)

Role of ZrO2Ā Passivation Layer Thickness in the Fabrication of High‐Responsivity GaN Ultraviolet Photodetectors 2019(12)

Assist Prof Dr.Ā  Francesco Asnicar – Blastocystis –Ā Best Researcher Award

Assist Prof Dr.Ā  Francesco Asnicar - Blastocystis -Ā Best Researcher Award

Department CIBIO, University of Trento, Italy - Italy

Professional Profile

SCOPUSĀ 

ORCIDĀ 

Early Academic Pursuits

Dr. Francesco Asnicar began his academic journey with a strong foundation in computational biology and microbiology. His interest in these fields led him to pursue advanced studies, culminating in a Ph.D. at the Department of Cellular, Computational, and Integrative Biology (CIBIO) at the University of Trento, Italy. His early academic pursuits were marked by a deep interest in understanding the complexities of the human microbiome and its interactions with various environmental factors, particularly diet.

Professional Endeavors

Dr. Asnicar currently holds a tenure-track researcher position at CIBIO, University of Trento. Before this, he served as a postdoctoral fellow at the Laboratory of Computational Metagenomics under the supervision of Prof. Nicola Segata from June 2019 to April 2024. During his postdoc, Dr. Asnicar led the local operative unit of the Human Microbiome Action H2020 project, a European initiative aimed at maximizing the impact of microbiome research through harmonization and knowledge transfer. His role in this project involved fostering collaborations with leading research laboratories, including TwinsUK and the Nutritional Sciences Departments at King’s College London, as well as with ZOE Limited.

Accolades and Recognition

Throughout his career, Dr. Asnicar has supervised one Ph.D. student, six MSc students, and two BSc students, and is currently co-supervising three Ph.D. students. His work has been recognized for its impact on the field of computational metagenomics and microbiome research, Blastocystis particularly in the context of microbiome-diet interactions.

Impact and Influence

Dr. Asnicar’s contributions have had a profound impact on microbiome research, particularly in Europe. His efforts in the Human Microbiome Action H2020 project have helped harmonize research practices and facilitate knowledge transfer across the continent. His collaborations with leading institutions have provided valuable insights into microbiome-diet relationships, influencing both academic research and practical Blastocystis applications in nutritional sciences.

Legacy and Future Contributions

Dr. Francesco Asnicar continues to push the boundaries of computational microbiome research. His ongoing work is expected to yield further innovations in the field, particularly in understanding the role of the microbiome in human health and disease. His legacy is one of dedication to Blastocystis advancing the field of computational biology, mentoring the next generation of scientists, and fostering international collaborations that drive scientific progress.

NOTABLE PUBLICATIONS

Dr. Behzad Sadeghi – Materials Science and Engineering – Best Researcher Award

Dr. Behzad Sadeghi - Materials Science and Engineering - Best Researcher Award

Salento University - Italy

Professional Profile

GOOGLE SCHOLAR

ORCIDĀ 

Early Academic Pursuits

Dr. Behzad Sadeghi began his academic journey with a Bachelor’s degree in Material Science Engineering from Azad University in Neyshabor, Iran, where he focused on subjects such as physical and mechanical properties, thermodynamics, mathematics, chemistry, and heat treatment. His early academic foundation set the stage for advanced studies in nanomaterials and nanotechnology engineering.

Professional Endeavors

Dr. Sadeghi pursued a Master’s degree in Nanotechnology Engineering with a major in Nanomaterials at Tarbiat Modares University (TMU) in Tehran, Iran. His master’s thesis, titled ā€œSurface Modification of LiMn2O4 Cathode of lithium-ion batteries by LiFePO4 Nano Coating,ā€ was supervised by Prof. Rasul Sarrafmamory and Prof. Hamidreza Shahverdi. This research marked his entry into the field of nanotechnology and advanced materials.

Accolades and Recognition

Dr. Sadeghi’s contributions to the field are reflected in his impressive publication record and citation metrics. He has authored 75 peer-reviewed papers and 4 book chapters, with his work cited 1116 times (Scopus), giving him an h-index of 19. His research has been supported by grants totaling approximately $250k. He has presented his findings at national and international conferences and has been invited to give Materials Science and Engineering presentations, showcasing the recognition of his peers in the scientific community.

Impact and Influence

Dr. Sadeghi's research has significantly impacted the field of materials science, particularly in the areas of metal matrix composites, high-temperature materials, and sustainable processing techniques. His work on severe plastic deformation techniques and hydrogen embrittlement Materials Science and Engineering has advanced the understanding of material behavior under extreme conditions, influencing both academic research and industrial applications.

Legacy and Future Contributions

Dr. Behzad Sadeghi continues to push the boundaries of materials science and nanotechnology. His ongoing research is expected to yield further innovations in the development and processing of advanced materials, contributing to more efficient and sustainable industrial practices. His legacy is one of rigorous scientific inquiry and impactful contributions to the field, inspiring future researchers and advancing technological Materials Science and Engineering progress.

NOTABLE PUBLICATIONS

Spark plasma sintering: process fundamentals 2019(122)

Microstructural and mechanical behavior of bimodal reinforced Al-based composites produced by spark plasma sintering and FSP 2018(94)

Ag doped Sn3O4 nanostructure and immobilized on hyperbranched polypyrrole for visible light sensitized photocatalytic,2022(72)

Novel 0D/1D ZnBi2O4/ZnO S-scheme photocatalyst for hydrogen production and BPA removalĀ  2021(68)

Novel S-scheme WO3/CeO2 heterojunction with enhanced photocatalytic degradation of sulfamerazine under visible light irradiation 2021(61)