Guangfen Du | Experimental Design | Best Researcher Award

Guangfen Du | Experimental Design | Best Researcher Award

Prof. Dr Guangfen Du, Shihezi University, China

Prof. Dr. Guangfen Du is a distinguished chemist specializing in materials chemistry and Raman spectroscopy. She earned her Ph.D. in Applied Chemistry from Tianjin University (2015) and holds degrees in Materials Chemistry (M.S., 2005) and Chemistry (B.S., 2002). Currently, a Full Professor at Shihezi University, she has held academic roles since 2005. Her innovative research includes synthetic methodologies and SuFEx click reactions, with publications in leading journals. Honored with awards like Distinguished Young Teacher (2016), her work has advanced chemical science and education. ๐ŸŽ“

Publication Profile

Scopus

Education

Prof. Dr. Guangfen Du holds a Ph.D. in Applied Chemistry from Tianjin University (2012โ€“2015) ๐ŸŽ“๐Ÿ”ฌ. She earned an M.S. in Materials Chemistry and Physics from the University of Science and Technology of China (2002โ€“2005) โš›๏ธ๐Ÿงช and a B.S. in Chemistry from Qufu Normal University (1998โ€“2002) ๐Ÿง‘โ€๐Ÿ”ฌ๐Ÿ“˜. Her academic journey showcases a solid foundation and expertise in chemistry and materials science ๐ŸŒŸ๐Ÿ“š. With her diverse educational background, Prof. Du contributes significantly to advancing research and innovation in her field, blending theoretical knowledge and practical applications to tackle modern scientific challenges ๐ŸŒ๐Ÿ”Ž.

Experience

Prof. Dr. Guangfen Du is a distinguished academic specializing in Material Science at the School of Chemistry and Chemical Engineering, Shihezi University. Since December 2019, she has served as a Full Professor, advancing research and education in her field. She was an Associate Professor from February 2015 to November 2019 and began her journey at Shihezi University as a Lecturer in September 2008. Before this, she contributed to Linyi University as a Lecturer from August 2005 to September 2008. Her career reflects dedication to academia, shaping future scientists and driving innovation in material science. ๐Ÿงช๐Ÿ“š๐ŸŒŸ

Awards and Honors

Recognized for outstanding contributions, this individual received the Distinguished Young Teacher Award from Shihezi University in 2016 ๐Ÿ†๐ŸŽ“. Their dedication to innovation and research was further acknowledged in 2015 with the Second Prize for Scientific and Technological Progress from Xinjiang Bingtuan, Xinjiang Uygur Autonomous Region ๐Ÿ”ฌ๐Ÿฅˆ. Earlier, in 2013, they were honored with the Third Prize for Scientific and Technological Progress by the same organization ๐Ÿฅ‰๐Ÿ”. These accolades reflect their exceptional achievements in education and scientific advancement, highlighting their commitment to fostering knowledge and driving progress in their field ๐ŸŒŸ๐Ÿ“˜.

Research Focus

Prof. Dr. Guangfen Du specializes in organic chemistry, with a focus on catalytic reactions and green synthesis. ๐ŸŒฟโš—๏ธ Her research highlights include base-catalyzed stereoselective transformations, SuFEx (sulfur-fluoride exchange) click chemistry, and N-heterocyclic carbene catalysis. ๐Ÿ”ฌโœจ She has contributed to innovative methods for synthesizing vinyl sulfones, benzoxathiins, and pentafluorophenyl sulfides, emphasizing efficiency and sustainability. ๐Ÿ“˜๐Ÿงช Her work integrates advanced techniques to assemble complex molecules, paving the way for new materials and bioactive compounds. ๐Ÿง ๐ŸŒ Prof. Duโ€™s research advances understanding in organofluorine chemistry and functionalized sulfur compounds, with applications in pharmaceuticals and materials science. ๐Ÿ’Š๐Ÿ”

Publication Top Notes

Brรธnsted base-catalyzed assembly of sulfochromeno[4,3-b]pyrrolidines via tandem [3 + 2] cycloaddition-SuFEx click reaction of ethenesulfonyl fluorides and o-hydroxyaryl azomethines

N-Heterocyclic Carbene-Catalyzed Synthesis of Pentafluorophenyl Sulfides | ๆฐฎๆ‚็Žฏๅกๅฎพๅ‚ฌๅŒ–็š„ไบ”ๆฐŸ่‹ฏๅŸบ็กซ้†š็š„ๅˆๆˆ

Synthesis of Vinyl Sulfones and Benzoxathiins via Base-Catalyzed Reactions of o-Hydroxyaryl Thiosulfonates and Ynones

SuFEx Reactions of Sulfonyl Fluorides, Fluorosulfates, and Sulfamoyl Fluorides Catalyzed by N-Heterocyclic Carbenes

Base-catalyzed stereoselective thiosulfonylation of ynones for the facile synthesis of thio-functionalized vinyl sulfones

Assembly of unsymmetrical 1,3,5-triarylbenzenes via tandem reaction of ฮฒ-arylethenesulfonyl fluorides and ฮฑ-cyano-ฮฒ-methylenones

Direct catalytic asymmetric vinylogous Michael addition to construct an all-carbon quaternary center with 3-alkenyl-oxindoles

Catalytic Asymmetric Conjugate Addition of 2-Methyl-3,5-dinitrobenzoates to Unsaturated Ketones

Construction of 6: H -benzo [c] thiochromenes via a tandem reaction of arynes with thionoesters

Conclusion

Prof. Dr. Guangfen Du is a distinguished scholar renowned for his academic achievements, pioneering research, and prestigious awards. ๐ŸŒŸ His groundbreaking work in materials chemistry, focusing on synthetic methodologies and catalytic processes, has significantly advanced global scientific knowledge. ๐Ÿงช๐ŸŒ With a robust record of contributions to high-impact publications ๐Ÿ“šโœจ and a steadfast dedication to both research and teaching, ๐Ÿ‘จโ€๐Ÿ”ฌ๐ŸŽ“ Dr. Du exemplifies excellence in academia. His innovative approach and unwavering commitment make him an outstanding candidate for the Best Researcher Award, recognizing his exceptional impact on the scientific community and his transformative contributions to the field. ๐Ÿ†๐ŸŒŸ

 

 

 

Pandiyarajan Thangaraj | Experimental Design | Best Researcher Award

Pandiyarajan Thangaraj | Experimental Design | Best Researcher Award

Assist Prof Dr Pandiyarajan Thangaraj, Indian Institute of Information Technology Design and Manufacturing Kurnool, India

Based on Assist. Prof. Dr. Pandiyarajan Thangaraj’s impressive academic background, research achievements, and professional contributions, he is indeed a strong candidate for a Best Researcher Award.

Publication profile

orcid

Academic Excellence

Dr. Pandiyarajan holds a Ph.D. in Physics from the prestigious National Institute of Technology, Trichy, and has a strong educational foundation in applied physics. His Ph.D. thesis focused on advanced nanostructures, reflecting his expertise in this field. With top scores in his academic pursuits, his consistent excellence showcases his dedication to learning and research.

Extensive Research Contributions

Dr. Pandiyarajanโ€™s research spans a range of significant topics such as semiconductor nanomaterials, thin-film fabrication, and their applications in solar cells and environmental technologies. He has worked on prestigious projects, including graphene quantum dot-based hydrogen fuel production and solar cell enhancement, showcasing innovation in renewable energy and environmental sustainability. His work has resulted in numerous high-impact publications, cementing his reputation in the scientific community.

Global Collaborations

He has post-doctoral research experience in prestigious international institutions such as the University of Concepcion, Chile, and has been a visiting researcher in Mexico and Sweden. These collaborations demonstrate his active participation in global research networks, advancing knowledge through interdisciplinary efforts.

Honors and Editorial Roles

Dr. Pandiyarajanโ€™s numerous honors, including international travel awards and editorial responsibilities, such as being a Topic Editor for Frontiers in Materials, highlight his recognized leadership in the field. His work as a reviewer for numerous high-profile journals further underscores his academic influence and expertise.

Research Grants and Leadership

His successful acquisition of multiple research grants, including a SERB-SRG project and a DRDO project, showcases his ability to secure competitive funding and lead groundbreaking research. His ongoing work in quantum dot sensitized photocathodes for hydrogen fuel production highlights his forward-thinking contributions to sustainable energy.

conclusion

Assist. Prof. Dr. Pandiyarajan Thangaraj’s academic rigor, extensive research output, international collaboration, and leadership in material science research make him a highly deserving candidate for the Best Researcher Award. His contributions not only advance scientific understanding but also offer practical solutions to global challenges.

publication top notes

Optimizing CuBi2O4 Solar Cells with PCBM Electron Transport Layer: A Comprehensive Simulation Study Achieving 32.16% Efficiency

Ajad Shrestha | Experimental Design | Innovative Research Award

Ajad Shrestha | Experimental Design | Innovative Research Award

Mr Ajad Shrestha, Global Engineering Associates, P., Ltd. Nepal

Publication profile

google scholar

Education

Ajad Shrestha holds a Master’s degree in Civil and Hydraulics Engineering from Tongji University (2021โ€“2024) and a Bachelor’s degree in Civil Engineering from the Institute of Engineering, Thapathali Campus (2015โ€“2019). His educational background has provided him with a solid foundation in structural engineering, which is critical for innovative research in this field.

Research Projects

Ajad has contributed to multiple significant research projects, such as studying the use of recycled polyethylene terephthalate (PET) in 3D printable mortar, investigating the flexural and shear performance of HS-ECC beams, and exploring autogenous shrinkage mitigation in high-strength engineered cementitious composites (HS-ECC). His ability to manage complex variables and deliver measurable results, like reducing shrinkage by 40%, showcases his technical expertise and problem-solving skills.

Work Experience

Ajad has substantial research experience as a Research Student at Tongji University, focusing on HS-ECC material and structural applications. He also worked as a Civil Engineer and Research Assistant at Global Engineering Associates, gaining hands-on experience in FEM analysis, bridge damage research, and structural calculations. This combination of academic and professional experience makes him a strong candidate for the Innovative Research Award.

Publications

Ajad’s contributions to scholarly publications are extensive, including papers on high-performance concrete, machine learning models, and advanced structural analysis. His research on the mechanical properties of cementitious composites and UHPC highlights his commitment to developing innovative, real-world solutions.

Research focus

The research focus of this individual is on advanced materials in civil engineering, particularly engineered cementitious composites and ultra-high-performance concrete (UHPC). Their work explores the mechanical and shrinkage properties of these materials, emphasizing the use of iron sand to develop high-strength cementitious composites. Additionally, they employ hybrid machine learning models to predict the mechanical properties of UHPC, validated through experiments. This interdisciplinary approach integrates material science, construction technology, and AI-driven predictive modeling to enhance the performance and sustainability of modern construction materials. ๐Ÿ—๏ธ๐Ÿ”ฌ๐Ÿ’ก

Awards and Scholarships

Ajad has earned the Departmental Scholarship from Tongji University, a recognition based on his academic performance and research contributions. This accolade, along with his proven track record in research, reflects his dedication and potential for future innovation.

Conclusion

Based on Ajad Shresthaโ€™s extensive research in structural engineering, innovative use of materials like recycled PET and HS-ECC, and his solid academic background, he appears to be a highly suitable candidate for the Innovative Research Award. His demonstrated ability to solve complex problems, combined with a focus on real-world applications, makes him a promising innovator in the field of civil engineering.

Publication top notes

Development of high-strength engineered cementitious composites using iron sand: Mechanical and shrinkage properties

Hybrid machine learning model to predict the mechanical properties of ultra-high-performance concrete (UHPC) with experimental validation

 

Marwa Ibrahim | Experimental Design | Women Researcher Award

Marwa Ibrahim | Experimental Design | Women Researcher Award

Assoc Prof Dr Marwa Ibrahim, National research centre NRC, Egypt

Dr. Marwa Ibrahim is an accomplished academic and researcher in Mechanical Power Engineering with a Ph.D. from Cairo University. Her expertise includes renewable energy and smart grids, with notable work on micro-grid systems and wind turbine optimization. She is an Assistant Professor at the National Research Centre, Egypt, and has held various roles, including quality assurance and mechanical engineering positions. Dr. Ibrahim is certified in project planning, safety, and quality management. Her projects include biodiesel production and hybrid renewable energy systems. She has participated in numerous international conferences and workshops on renewable energy. ๐ŸŒ๐Ÿ”‹๐ŸŒž

Publication profile

Scopus

Education

Dr.Marwa Ibrahim, earned a PhD in Mechanical Power Engineering from Cairo University in January 2018, with a focus on “Design and Performance Evaluation of Renewable Energy Based Micro-Grid Systems with Energy Storage” ๐ŸŒ๐Ÿ”‹. He holds an M.Sc. in Industrial Engineering from Fayoum University (2014), specializing in “Optimization of Small-Scale Wind Turbine Systems Considering Externalities” ๐ŸŒฌ๏ธโš™๏ธ, and a B.Sc. in Industrial Engineering from the same institution (2008), where his graduation project on developing an ISO\TS 16949 Quality System earned an excellent grade ๐ŸŽ“๐Ÿ“ˆ. His work centers on renewable energy and industrial optimization.

Experience

Dr. Marwa Ibrahim, is an accomplished mechanical engineer at the Mech. Eng. Department, NRC, where they have served as an Assistant Professor since 2018. Their journey began as a Researcher Assistant in 2010, evolving through roles as Assistant Researcher (2014-2017) and Mechanical Engineer (2009-2010). Before joining NRC, they honed their expertise as a Quality Assurance Engineer at ICDI Company, Egypt (2008-2009). With a robust background in research and quality assurance, Dr. Marwa Ibrahim, has made significant contributions to the field of mechanical engineering. ๐Ÿ› ๏ธ๐Ÿ“Š

Projects

At the National Research Centre, Egypt, He contributed to several innovative projects. As a Co-PI on the 2019-2021 project for designing and testing a continuous biodiesel production device from Egyptian Jatropha seeds, He played a key role. He was also part of the STDF project optimizing hybrid renewable systems for tourism facilities in Fayoum (2019). He involvement extended to projects like the development of a mini car running on alternative fuels (2018-2020) and hybrid energy systems for Nubariyyah (2017-2020). Additionally, He worked on designing presses for oil extraction from Jatropha (2016-2019) and exploring hydrogen fuel from solar energy (2016-2019). ๐ŸŒฑ๐Ÿ”ง๐Ÿš—๐Ÿ”‹๐ŸŒž

Research focus

Dr. M.M. Ibrahim’s research primarily focuses on optimizing and managing renewable energy systems, particularly wind and solar energy. His work involves evaluating technical and economic aspects of these systems to enhance efficiency and sustainability. Key areas include hybrid renewable energy systems, wind off-grid applications, and comparative studies between solar and wind energy. Ibrahim also explores innovative applications such as smart energy management for solar water heating and grid-connected solar PV systems for electric vehicle charging. His studies contribute to improving renewable energy solutions, particularly in remote and urban settings. ๐ŸŒฌ๏ธโ˜€๏ธ๐Ÿ’ก

Publication top notes

Energy management strategies of hybrid renewable energy systems: A review

Optimization of wind off-grid system for remote area: Egyptian application

Technical and Economic Comparison between Solar and Wind Energy Supplying Desalination System

Electricity production and comparative analysis for wind availability power potential assessment at four sites in Egypt

EXPERIMENTAL AND THEORETICAL STUDY OF SMART ENERGY MANAGEMENT SOLAR WATER HEATING SYSTEM FOR OUTDOOR SWIMMING POOL APPLICATION IN EGYPT

Investigation of a grid-connected solar pv system for the electric-vehicle charging station of an office building using pvsol software

Sustainable technical design and economicโ€“environmental analysis of SMART solar street lighting system in Giza City, Egypt

NUMERICAL THERMAL STUDY OF HEAT TRANSFER ENHANCEMENT IN LAMINAR-TURBULENT TRANSITION FLOW THROUGH ABSORBER PIPE OF PARABOLIC SOLAR TROUGH COLLECTOR SYSTEM

Feasibility and performance analysis of grid-tied solar photovoltaic systems using pvsyst simulation package of pharmaceutical factory case study in Egypt