Driss MOULOUA | Nanomaterials | Young Scientist Award

Dr. Driss MOULOUA | Nanomaterials | Young Scientist Award

Postdoc, LTM/CEA-Leti, France

🌟 Driss Mouloua, a dynamic researcher in nanomaterials, optoelectronics, and nanophotonics, currently serves as a postdoctoral researcher at the CNRS Laboratory of Microelectronics Technology (LTM) at CEA/LETI, Grenoble, France. Born on July 29, 1994, in Morocco, Driss pursued his passion for science through a journey across multiple countries and prestigious institutions. With a PhD in Materials Science and Optoelectronics (2020–2023), earned through a cotutelle program between INRS in Quebec, Canada, and UPJV in Amiens, France, he specializes in nanostructures for solar energy and photocatalysis. Driss’s exceptional academic journey includes advanced degrees in renewable energy and sustainable engineering. Multilingual and equipped with expertise in advanced research tools, Driss has authored numerous high-impact publications in semiconductor physics, micro/nanofabrication, and 2D materials. With his innovative work, Driss continues to contribute to the advancement of micro-LEDs, lasers, and nanophotonic devices.

Profile

Education 

🎓 Driss Mouloua’s educational journey reflects his dedication to cutting-edge materials science and renewable energy. He earned a PhD in Materials Science, Optoelectronics, and Photocatalysis (2020–2023) through a cotutelle program between INRS in Quebec, Canada, and UPJV in Amiens, France. His doctoral research focused on MoS₂-based nanostructures for solar energy capture and photocatalysis, under funding from Hauts-de-France and NSERC.

In 2018–2019, he completed a Master’s in Materials Processing and Engineering for Sustainable Development at Arts et Métiers ParisTech in Bordeaux-Talence, France. This followed his 2016–2018 Master’s in Renewable Energies and Storage Technologies from Mohammed V University in Rabat, Morocco. Driss also undertook specialized internships in photonic applications and radiative cooling at the University of Birmingham, UK, and UPNA, Spain. With an extensive academic foundation and global research exposure, Driss excels in advancing nanomaterials and optoelectronics.

Experience 

💼 Driss Mouloua has cultivated a robust research portfolio through diverse roles in prestigious institutions. Since June 2023, he has been a postdoctoral researcher at CNRS/LTM at CEA/LETI, Grenoble, where he focuses on integrating micro-LEDs and III-V semiconductor lasers on silicon for infrared applications.

His previous experiences include a Master’s internship (2019) at the University of Birmingham, UK, researching photonic metamaterials, and a Master’s internship (2018) at UPNA, Spain, exploring radiative cooling using photonic crystals and metasurfaces. During his PhD (2020–2023), Driss developed MoS₂-based nanostructures for energy and photocatalysis, conducting research across Canada and France.

In each role, Driss has honed his expertise in semiconductor physics, nanofabrication, and optoelectronics. Proficient in cutting-edge simulation tools like COMSOL and Python, Driss applies his skills to innovative projects with global impact, advancing technologies in renewable energy and photonics.

Research Focus 

🔬 Driss Mouloua’s research emphasizes cutting-edge advancements in nanomaterials, optoelectronics, and energy applications. He specializes in semiconductor physics, focusing on the fabrication and characterization of nanostructures such as MoS₂-based materials. His PhD research investigated MoS₂ nanostructures for solar energy capture and photocatalysis, demonstrating significant enhancements in photodetection and energy conversion.Currently, his work at CNRS/LTM explores monolithic integration of III-V semiconductor lasers and micro-LEDs on silicon platforms, aiming to revolutionize infrared optoelectronic devices. Driss also engages in designing metasurfaces and photonic crystals for passive radiative cooling and advanced photonics.Employing simulation tools like COMSOL and Nextnano+, Driss investigates nanoscale properties of materials to optimize performance in photonic and energy applications. His interdisciplinary focus bridges fundamental science and practical applications, driving innovations in renewable energy, 2D materials, and scalable micro/nanofabrication.

Publications

📘Recent Progress in the Synthesis of MoS₂ Thin Films for Sensing, Photovoltaic, and Plasmonic Applications: A Review
📗 One-Step Chemically Vapor Deposited Hybrid 1T-MoS₂/2H-MoS₂ Heterostructures Towards Methylene Blue Photodegradation
📙 Fabrication Control of MoS₂/MoO₂ Nanocomposite via Chemical Vapor Deposition for Optoelectronic Applications
📕 Broadband Photodetection Using One-Step CVD-Fabricated MoS₂/MoO₂ Microflower/Microfiber Heterostructures
📓 Tuning Optoelectronic Properties of Pulsed Laser Deposited “3D”‐MoS₂ Films via Vertical Alignment
📒 Giant Photodegradation Rate Enabled by Vertically Grown 1T/2H MoS₂ Catalyst on Silver Nanoparticles
📖 Scalable Optical Dye Sensors Based on Differential Reflectivity by MoS₂ Nanostructures
📔 Enhanced Photodetection Properties of CVD-Grown MoS₂ Nanosheets on Ag-Decorated Substrates
📚 Exploring Strategies for Performance Enhancement in Micro-LEDs: A Synoptic Review of III‐V Semiconductor Technology

SUJITH SURENDRAN VIJAYAMMA | THERMAL TRANSPORT VIA NANO LUBRICATION | Best Researcher Award

Dr. SUJITH SURENDRAN VIJAYAMMA | THERMAL TRANSPORT VIA NANO LUBRICATION | Best Researcher Award 

POSTDOCTORAL FELLOW, POLITECHNICO DI TORINO GENERAL MOTORS, Italy

Dr. Sujith S. V is a Post-Doctoral Fellow at Politecnico di Torino, Italy, specializing in advanced materials, manufacturing, and nanofluids. He has an extensive academic background, with a Ph.D. in Mechanical Engineering (Manufacturing) from IIT Roorkee, India. Dr. Sujith has collaborated with renowned institutions like Korea University and CNU National University, contributing significantly to research in material science and manufacturing. His work is funded by the National Research Foundation of Korea and the European Research Council. He is passionate about sustainable energy solutions, material optimization, and enhancing thermal and mechanical properties of materials for industrial applications.

Profile

Google Scholar

Strengths for the Award

  1. High-Quality Academic Background and International Exposure:
    • Dr. Sujith S V has an impressive academic trajectory, with a Ph.D. from the Indian Institute of Technology Roorkee (IIT Roorkee), India, and substantial international experience. His post-doctoral research at prestigious institutions like Korea University and Politecnico di Torino is noteworthy.
    • He has been consistently funded by prominent government grants such as the Ministry of Human Resource Development Scholarship (India), the National Research Foundation of Korea, and the European Research Council. This indicates the strong recognition of his work by both national and international funding agencies.
  2. Prolific Research Contributions:
    • Dr. Sujith has published numerous high-impact papers in reputable journals such as Journal of Molecular Liquids, Journal of Alloys and Compounds, Journal of Tribology, and Materials Today: Proceedings.
    • His work spans diverse, cutting-edge topics in material science, manufacturing, nanotechnology, and lubrication, making significant contributions to areas like nanofluids, in-situ metal matrix composites, and the wear behavior of materials. These publications have garnered substantial citations, indicating the influence of his work in the scientific community.
  3. Innovative Research Topics:
    • Dr. Sujith’s research topics are innovative and relevant to current industrial needs, especially in manufacturing, materials science, and green technologies. The evaluation of eco-friendly lubricants, the development of advanced composite materials, and thermal conductivity enhancements demonstrate his commitment to sustainable and practical applications in engineering.
    • His research on the effect of hydrogen embrittlement in hydrogen-fired engines is timely and crucial for the advancement of sustainable energy solutions, particularly in automotive and aerospace applications.
  4. Awards and Recognition:
    • Dr. Sujith has received several prestigious awards, including the Binani Gold Medal from the Indian Institute of Metals, highlighting his excellence in research. This recognition attests to his ability to produce high-quality, impactful research.
    • His collaboration with global institutions such as Politecnico di Torino and Dumarey, as well as his role in a European Research Council grant project, further bolsters his credentials for the Best Researcher Award.
  5. Collaborative and Multidisciplinary Approach:
    • His extensive collaboration with institutions and industries worldwide showcases his ability to work in multidisciplinary environments. His research spans across materials science, nanotechnology, mechanical engineering, and tribology, addressing both theoretical and practical challenges.
  6. Leadership and Mentorship:
    • Dr. Sujith has experience as an assistant professor and tutor, demonstrating his ability to guide and mentor students and younger researchers. His leadership in research teams and projects contributes to the academic and professional development of emerging scholar

Areas for Improvement

  1. Broader Outreach and Interdisciplinary Impact:
    • While Dr. Sujith’s work is well-cited within materials science and manufacturing, there may be opportunities to extend the outreach of his research to a wider range of interdisciplinary fields. Exploring collaborations with researchers in fields like sustainability, environmental science, or renewable energy technologies could further expand the impact of his work.
  2. Research Focus Diversification:
    • Dr. Sujith’s research has a strong focus on materials science and manufacturing, which is excellent, but it could be beneficial to consider expanding into emerging fields like artificial intelligence, machine learning applications in materials design, or more applied research in the automotive and aerospace industries. This could enhance the broader relevance and technological impact of his work.
  3. Public Engagement and Dissemination:
    • While Dr. Sujith has an impressive portfolio of publications, increasing the dissemination of his work through more public-facing platforms or media outlets (e.g., industry conferences, public lectures, or popular science articles) could raise awareness of his research’s real-world applications, especially in sustainable manufacturing and eco-friendly technologies.

Education

Dr. Sujith earned his Ph.D. in Mechanical Engineering (Manufacturing) from the Indian Institute of Technology Roorkee in 2020. Prior to this, he completed his M.Tech (Mechanical) from IIT Roorkee in 2012, funded by the Ministry of Human Resource Development (MHRD), Government of India. His undergraduate degree in Mechanical Engineering was obtained from Sree Chitra Thirunal Government College of Engineering in 2010, where he graduated with First Class honors. Throughout his academic journey, he secured scholarships and fellowships, such as the GATE 2010 scholarship and the Brain Korea 21 fellowship, showcasing his commitment to excellence in research.

Experience

Dr. Sujith has held multiple prestigious positions in academia and research. He served as an Assistant Professor at Pratap University in India from 2012-2013 and later worked as a GATE tutor at Gate Forum. His post-doctoral journey began at Korea University, where he worked as a Research Professor from 2021 to 2023. He is currently a Postdoctoral Fellow at CNU National University (2023-2024). Dr. Sujith has also contributed to several research projects in collaboration with institutions such as Politecnico di Torino and General Motors, Italy, focusing on advanced manufacturing processes and material performance under extreme conditions.

Awards and Honors

Dr. Sujith has received numerous prestigious accolades for his contributions to materials science and engineering. He was awarded the Binani Gold Medal by the Indian Institute of Metals for his outstanding published research on hot-tearing resistance. His Ph.D. and M.Tech studies were both supported by the Ministry of Human Resource Development, Government of India, under the prestigious fellowship programs. He also received a European Research Council grant for a collaborative project on hydrogen embrittlement and hydrogen-fired engines. His research has been widely cited in high-impact journals, underscoring his significant contributions to the field.

Research Focus

Dr. Sujith’s research interests lie in advanced materials, manufacturing processes, and nanotechnology. His work primarily focuses on the fabrication, characterization, and optimization of metal matrix composites (MMCs) and nanofluids. He has also researched the thermophysical properties of nanofluids and their applications in sustainable energy systems and cooling technologies. Other areas of interest include wear behavior of composites, friction stir welding, and the development of eco-friendly lubricants for industrial applications. His ongoing projects include collaboration with leading international research groups to explore hydrogen embrittlement and its impact on engine materials.

 Publications

  1. Experimental evaluation on rheological behavior of Al2O3-pure coconut oil nanofluids 🌿🛢️
  2. Thermal history analysis and structure-property validation of friction stir welded Al-7079-TiC in-situ metal matrix composites 🔥🔧
  3. An investigation into fabrication and characterization of direct reaction synthesized Al-7079-TiC in situ metal matrix composites ⚙️🔬
  4. A review on thermophysical property assessment of metal oxide-based nanofluids: industrial perspectives 📚💡
  5. Synergistic Effect of In-Situ Al-7075/Al3Ti Metal Matrix Composites Prepared via Stir-Assisted Ultrasonic Melt Processing Under Dynamic Nucleation 🛠️🔬
  6. Microstructural characterization and experimental investigations into two body abrasive wear behavior of Al-7079/TiC in-situ metal matrix composites ⚒️🔍
  7. Surface Integrity and Flank Wear Response Under Pure Coconut Oil-Al2O3 Nano Minimum Quantity Lubrication Turning of Al-7079/7 wt%-TiC In Situ Metal Matrix 🌱🔩
  8. Experimental Evaluation in Thermal Conductivity Enhancement and Heat Transfer Optimization of Eco-Friendly Al2O3–Pure Coconut Oil Based Nano Fluids 🌿💧
  9. Modeling of wear process parameters of in-situ RZ5-10wt% TiC Composite using artificial neural network 🤖🛠️
  10. Experimental investigations on viscosity and density of eco-friendly MoS2-sesame oil nano-lubricants and its influence on pumping power 🌱⚙️
  11. A new hot tearing assessment by using stepped ring core mold and the effect of strontium on the hot-tearing resistance of Al–6 wt% Zn based alloy 🔥🧪

Conclusion

Dr. Sujith S V is undoubtedly a highly deserving candidate for the Best Researcher Award. His academic credentials, research output, and international collaborations place him at the forefront of research in materials science, manufacturing, and nanotechnology. His innovative and impactful research, coupled with significant recognition through awards and funding, further strengthens his candidacy. While there are opportunities for further broadening his research focus and increasing public engagement, these are relatively minor areas for improvement in an otherwise outstanding academic and research career.In conclusion, Dr. Sujith S V’s dedication to advancing scientific knowledge and contributing to sustainable technological development makes him a strong candidate for this prestigious award. His work is poised to have a lasting impact on multiple industries, especially in the context of materials innovation and green technologies.

 

 

Abear El-Gamal | Materials Science | Best Researcher Award

Assoc Prof Dr. Abear El-Gamal | Materials Science | Best Researcher Award

Professor Assistant | Cairo University | Egypt

Best Researcher Award

Strengths for the Award

  1. Extensive Research Experience
    • With over 24 years of experience, Dr. Abeer Hassan has a profound background in materials science and physics, contributing significantly to the academic community through her research in various fields such as nanocomposites, electromagnetic shielding, and flame-retardant coatings.
  2. Innovative Research Contributions
    • Dr. Hassan’s work on enhancing the mechanical and electrical properties of materials, such as irradiated acrylonitrile butadiene rubber/magnetite nanocomposites and flame-retardant coatings, demonstrates her ability to address complex scientific challenges with innovative solutions.
  3. Publication Record
    • Dr. Hassan has published numerous research articles in reputable journals like Journal of Thermoplastic Composite Materials and Materials Chemistry and Physics. Her research is well-cited and contributes to the advancement of knowledge in materials science and nanotechnology.
  4. Peer Recognition
    • Her involvement in peer review activities for journals such as Physica Status Solidi highlights her recognition as an expert in her field by the scientific community.

Areas for Improvement

  1. Interdisciplinary Collaboration
    • Expanding her research through interdisciplinary collaboration could further enhance the impact of her work. Collaborating with experts in related fields such as environmental science or biomedical engineering could open new avenues for innovative applications of her research.
  2. International Exposure
    • Increasing her participation in international conferences and collaborative projects could elevate her profile on a global scale, allowing for greater dissemination of her research and potential for partnerships.
  3. Grant Acquisition
    • Securing more international research grants could provide additional resources for conducting large-scale, high-impact studies. This would not only enhance the scope of her research but also position her as a leader in obtaining competitive funding.

Conclusion

Dr. Abeer Hassan is a highly accomplished researcher with a strong foundation in materials science and significant contributions to the academic community. Her innovative work, extensive publication record, and peer recognition make her a suitable candidate for the “Best Researcher Award.” While she has already achieved much, further interdisciplinary collaboration, international exposure, and grant acquisition could enhance her impact and reinforce her status as a leading researcher in her field.

🎯 Short Bio

Abeer Hassan is an Assistant Professor at the Faculty of Science, Cairo University, Egypt. With over 24 years of experience in higher education, she has made significant contributions to the field of physics, particularly in the areas of materials science and nanotechnology. Her research focuses on enhancing the mechanical and electrical properties of various materials for advanced industrial applications.

Profile

Orcid

🎓 Education

Abeer Hassan earned her academic credentials from Cairo University, where she has been an integral part of the Faculty of Science since 2000. Her educational journey has been marked by a deep commitment to advancing knowledge in physics, culminating in her current role as an Assistant Professor.

🧑‍🔬 Experience

Abeer Hassan has over 24 years of experience as an Assistant Professor in the Faculty of Science at Cairo University. Throughout her career, she has been involved in numerous research projects, mentoring students, and contributing to the development of the university’s academic programs. Her work has been widely recognized in the scientific community, particularly in the field of materials science.

🔬 Research Interest

Abeer Hassan’s research interests lie in the field of materials science, with a focus on the mechanical, electrical, and thermal properties of advanced materials. She is particularly interested in nanocomposites, electromagnetic shielding applications, and the development of multifunctional coatings. Her work aims to bridge the gap between fundamental research and practical industrial applications.

🏆 Awards

Abeer Hassan has been recognized for her contributions to science and education, though specific awards and recognitions are not listed. Her work continues to impact the scientific community and inspire her peers and students alike.

📚 Publications

Enhancing the mechanical and electrical properties of irradiated acrylonitrile butadiene rubber/magnetite nanocomposites for electromagnetic shielding applicationsJournal of Thermoplastic Composite Materials, 2024. DOI: 10.1177/08927057241270832. Cited by: Crossref.

Preparation of multifunctional flame-retardant coating of cotton fabrics for electrical insulating applicationsJournal of Thermoplastic Composite Materials, 2024. DOI: 10.1177/08927057231203549. Cited by: Crossref.

Optical and Electrical Properties of Polystyrene/Poly‐methyl methacrylate Polymeric Blend Filled with Semiconductor and Insulator Nanofillersphysica status solidi (RRL) – Rapid Research Letters, 2023. DOI: 10.1002/pssr.202300145. Cited by: Crossref.

Effect of micro-sized lead oxide on the workability, mechanical strength and durability of alkali-activated slag mortarConstruction and Building Materials, 2023. DOI: 10.1016/j.conbuildmat.2023.130890. Cited by: Crossref.

A new multifunctional flame-retardant coating for cotton fabric to enhance smoke suppression, and UV shielding propertiesIndustrial Crops and Products, 2023. DOI: 10.1016/j.indcrop.2023.117469. Cited by: Scopus – Elsevier.

 

 

Florian Glauche | Micro and Nanotechnology | Best Researcher Award

Mr Florian Glauche | Micro and Nanotechnology | Best Researcher Award

Mr Florian Glauche, Fraunhofer Institute for Electronic Nano Systems (ENAS), Germany

Florian Glauche is a dedicated researcher specializing in nanotechnology with a focus on creating innovative microstructures. Currently pursuing an industry-based PhD at TU Bergakademie Freiberg, his research is supported by an ESF scholarship and aims to develop flexible, adhesive, and functional microstructures. With a diploma in Nanotechnology from TU Bergakademie Freiberg and a background enriched by diverse international experiences, Florian has worked with leading research institutions, including the Fraunhofer Institute for Electronic Nano Systems. His interdisciplinary skills span microstructuring, material characterization, and MEMS technology, and he has contributed to advancing Parylene-based microstructures.

Publication Profile

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Strengths for the Award

  1. Relevant Research Experience:
    • Florian has been involved in an industry-based PhD project focused on creating flexible, adhesive, and functional microstructures. This experience demonstrates a high level of research capability in a specialized field, which is highly relevant to the award.
  2. Publication Record:
    • The CV includes a journal article titled “Hot Embossing to Fabricate Parylene-Based Microstructures and Its Impact on the Material Properties” published in Polymers. This indicates a contribution to significant research in the field of nanotechnology and materials science.
  3. Diverse International Experience:
    • Florian has participated in research exchanges and internships at prestigious institutions like Tohoku University and the Norwegian University of Science and Technology. Such international exposure reflects a global perspective and adaptability in research.
  4. Strong Academic Background:
    • A diploma in Nanotechnology with a final grade of 1.6 and an ongoing PhD project funded by an ESF scholarship highlights both strong academic performance and the ability to secure competitive funding.
  5. Technical Skills:
    • Proficiency in various software tools and programming languages (e.g., LabVIEW, Origin, Matlab, Solidworks) showcases a well-rounded technical skill set important for research and development.
  6. Volunteer and Leadership Experience:
    • Active involvement in organizing student events and voluntary work as a dance teacher demonstrates leadership skills and a well-rounded character, which can be beneficial in collaborative research environments.

Areas for Improvement

  1. Broader Research Output:
    • While the CV lists a relevant publication, it could benefit from a broader range of research outputs (e.g., conference presentations, additional journal articles) to strengthen the case for the award.
  2. Impact and Citation Metrics:
    • More information on the impact and citation metrics of the published work could provide additional evidence of Florian’s research influence and recognition in the field.
  3. Future Research Plans:
    • Including details on future research goals or planned projects could provide insight into Florian’s long-term vision and potential for continued contributions to the field.

Education

Florian Glauche is pursuing a PhD at TU Bergakademie Freiberg, starting in September 2023, with a focus on creating flexible, adhesive, and functional microstructures. He completed his diploma in Nanotechnology from TU Bergakademie Freiberg in August 2023, achieving a final grade of 1.6. Prior to this, Florian attended Martin-Luther-Gymnasium in Frankenberg/Sa., where he obtained his Abitur with a final grade of 2.0. His education reflects a strong foundation in nanotechnology and a commitment to advancing his expertise through rigorous academic and research pursuits.

Experience

Florian Glauche has accumulated significant research experience at the Fraunhofer Institute for Electronic Nano Systems, starting as an intern in 2013 and advancing to an assistant scientist and researcher. His roles included microstructuring of flexible substrates, MEMS characterization, and biocompatible encapsulation. His industry-based PhD research involves the creation of functional microstructures. Additionally, Florian has gained valuable experience through internships at a textile printing factory and a workshop focused on practical preparation for studies and work.

Research Focus

Florian Glauche’s research focuses on developing flexible, adhesive, and functional microstructures, with particular expertise in micro- and nanostructuring of surfaces. His work at the Fraunhofer Institute for Electronic Nano Systems includes biocompatible encapsulation and MEMS technology. His PhD project, funded by an ESF scholarship, aims to push the boundaries of microstructure functionality and flexibility. Florian’s research is also marked by his investigation into Parylene-based microstructures, contributing to advancements in optical applications and material properties.

Publication Top Notes

  • Hot Embossing to Fabricate Parylene-Based Microstructures and Its Impact on the Material Properties (Polymers, 2024-08-03) 🌟🔬

Conclusion

Florian Glauche is a highly suitable candidate for the Research for Best Researcher Award, given his relevant research experience, strong academic background, technical skills, and international exposure. The primary areas for enhancement involve expanding the range of research outputs and providing more information on the impact of his work and future research plans. Addressing these areas could further strengthen his candidacy for the award.

 

 

Sumit Kumar Gupta | Nanotechnology | Excellence in Innovation Award

Prof Dr. Sumit Kumar Gupta | Nanotechnology | Excellence in Innovation Award

Professor, St.Wilfred;s PG College Jaipur, India

Prof. Sumit Kumar Gupta is a distinguished physicist and academic leader based in Jaipur, India. With a strong background in physics and innovative research, he has made significant contributions to both his field and the academic community. His recent work includes pioneering research on stress detection using advanced deep learning techniques.

Profile

Orcid

Strengths for the Award:

Innovative Research: Prof. Gupta has worked on innovative topics such as the “Novel Method for Detection of Stress in Employees using Hybrid Deep Learning Models,” showcasing his commitment to applying cutting-edge technology in practical applications.

Leadership Experience: His roles as Head of Department and NACC Coordinator at St. Wilfred’s PG College, as well as Dean of the Faculty of Science at Parishkar College, highlight significant leadership and administrative experience in academia.

Educational Background: His PhD in Physics from the University of Rajasthan indicates a strong academic foundation and expertise in his field.

Areas for Improvement:

Broader Impact Evidence: While his research is innovative, additional evidence of the broader impact or societal benefit of his work would strengthen his case. Examples might include real-world applications, collaborations, or significant improvements resulting from his research.

Publication and Citation Metrics: It would be beneficial to have more details on the quantity and impact of his publications and citations, which are often important in evaluating research excellence.

Education

Prof. Gupta earned his PhD in Physics from the University of Rajasthan in April 2014. His academic journey has provided him with a solid foundation in physics and research methodologies.

Experience

Prof. Gupta currently serves as the Head of the Department and NACC Coordinator at St. Wilfred’s PG College in Jaipur, a position he has held since May 2022. Prior to this, he was the Dean of the Faculty of Science at Parishkar College of Global Excellence, where he worked from July 2016 to April 2022. His roles have involved significant leadership and administrative responsibilities in academia.

Research Interest

Prof. Gupta’s research interests include the application of deep learning models to practical problems. His notable work involves developing novel methods for stress detection in employees, combining machine learning techniques with real-world applications.

Publications Top Notes

“Novel Method for Detection of Stress in Employees using Hybrid Deep Learning Models”
Proceedings of the 8th International Conference on Communication and Electronics Systems (ICCES 2023), 2023.

Conclusion:

Prof. Sumit Kumar Gupta appears to have strong credentials in innovative research and leadership. His work on deep learning models for stress detection is a notable contribution, but a more comprehensive view of his overall impact and further evidence of his work’s influence would provide a fuller picture. If his innovations have led to significant advancements or practical applications, this would strengthen his candidacy for the “Excellence in Innovation Award.”

Overall, Prof. Gupta seems to be a suitable candidate, provided his achievements are contextualized with evidence of broad impact and contributions to his field.