Aayushi Aayushi | Chemistry and Materials Science | Best Researcher Award

Aayushi Aayushi | Chemistry and Materials Science | Best Researcher Award

Dr Aayushi Aayushi, Virginia Tech India Center for Advanced Research and Innovation, India

Dr. Aayushi is a passionate chemist ๐Ÿงช with a Ph.D. in Chemistry (2024) from Thapar Institute of Engineering and Technology, specializing in Graphene and Carbon Quantum Dots for sensing applications. She has been a Senior Research Fellow at CEEMS and has expertise in fluorescence spectroscopy and nanomaterials. ๐Ÿ“Šโœจ With multiple high-impact publications ๐Ÿ“š, she has presented at global conferences ๐ŸŒ and won prestigious awards, including CSIR NET AIR-02 and Best Oral Presentation. ๐Ÿ† She also actively engages in academic editing and journal review. Beyond research, she has excelled in public speaking ๐ŸŽค and social service. ๐Ÿค

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Education

Dr. Aayushi Aayushi ๐ŸŽ“ holds a Ph.D. in Chemistry (2019-2024) from Thapar Institute of Engineering and Technology, Punjab, specializing in the synthesis of Graphene Quantum Dots (GQDs) and Carbon Quantum Dots (CQDs) for sensing applications ๐ŸŒŸ๐Ÿ”ฌ, achieving a perfect CGPA of 10/10. She earned her M.Sc. in Chemistry (2017-2019) from the same institute, focusing on solar light-driven photocatalytic degradation of Methylene Blue โ˜€๏ธ๐Ÿงช (CGPA: 9.09/10). Her academic journey began with a B.Sc. (Medical) from Panjab University (80.45%) ๐Ÿ“–, followed by stellar performances in secondary (CGPA: 9.8/10) and senior secondary (91%) education at O.S.D.A.V. Public School ๐Ÿ“š๐Ÿ†.

Experience

Dr. Aayushi is a dedicated researcher in nanomaterials, serving as a Senior Research Fellow (2022-2024) and previously as a Junior Research Fellow (2020-2022) at TIET-Virginia Tech, CEEMS. Her work focuses on synthesizing Graphene Quantum Dots (GQDs) and Carbon Quantum Dots (CQDs) from diverse precursors for fluorometric detection of biomolecules and metal ions ๐Ÿ”ฌโœจ. She specializes in fluorescence spectroscopy, exploring optical properties and detection sensitivity. She was a research intern at IISER Kolkata (2018) and a teaching assistant in Applied Chemistry ๐Ÿซ๐Ÿ“š. Skilled in FT-IR, UV-Vis, and fluorescence spectrometry, she contributes significantly to quantum dot research โšก๐Ÿ”.

Research Focus

Dr. Aayushi Kunduโ€™s research focuses on sustainable environmental management ๐ŸŒฑ, nanomaterials ๐Ÿงช, and advanced sensor technologies ๐Ÿ”ฌ. Her work includes biofuel technologies for eco-friendly energy ๐ŸŒฟ, innovative methods for micro- and nano-plastic removal ๐ŸŒŠ, and photocatalytic materials for pollutant degradation โ˜€๏ธ. She develops carbon-based nanoprobes from agricultural waste ๐ŸŠ๐ŸŒพ for ultra-sensitive detection of environmental contaminants โš—๏ธ. Additionally, she explores graphene quantum dots and carbon nanofibers for biosensing applications ๐Ÿฉบ. Her research extends to the environmental and mental health impacts of COVID-19 ๐Ÿฆ ๐Ÿง . Overall, her contributions drive sustainable innovations for cleaner environments and advanced analytical techniques. ๐ŸŒโœจ

Achievements and Honor

Dr. Aayushi is an accomplished researcher in Chemical Sciences ๐ŸŽ“๐Ÿงช, securing an impressive All India Rank-02 in the CSIR NET (Dec 2023) ๐Ÿ†. She also qualified IIT JAM (2017) and received the CBSE CSSS Scholarship (2014-2019) ๐ŸŽ–๏ธ. Honored with the Young Achiever Award (2021) ๐Ÿ…, she earned a Merit Scholarship (2018) from TIET, Patiala. Her research excellence was recognized with the Best Oral Presentation Award (EMSD-2022) ๐Ÿ—ฃ๏ธ and the Best Poster Award (CEEMS-2024) ๐Ÿ… for her work on CQDs-based metal ion detection. A passionate scientist, she continues to make impactful contributions to sustainable materials and sensor technology. ๐Ÿ”ฌโœจ

Publication Top Notes

Sustainable environmental management and related biofuel technologies

Identification and removal of micro-and nano-plastics: Efficient and cost-effective methods

Modulated BiOCl nanoplates with porous g-C3N4 nanosheets for photocatalytic degradation of color/colorless pollutants in natural sunlight

Rice Husk-Derived Carbon Quantum Dots-Based Dual-Mode Nanoprobe for Selective and Sensitive Detection of Fe3+ย and Fluoroquinolones

Indians vs. COVID-19: the scenario of mental health

Coal-derived graphene quantum dots with a Mn 2+/Mn 7+ nanosensor for selective detection of glutathione by a fluorescence switch-offโ€“on assay

Orange Pomace-Derived Fluorescent Carbon Quantum Dots: Detection of Dual Analytes in the Nanomolar Range

Upcycling Waste: Citrus limon Peel-Derived Carbon Quantum Dots for Sensitive Detection of Tetracycline in the Nanomolar Range

Microplastics and Nanoplastics in Aquatic Environment: Challenges and Threats to Aquatic Organisms

A portable microcontroller-enabled spectroscopy sensor module for the fluorometric detection of Cr (vi) and ascorbic acid, utilizing banana peel-derived carbon quantum dots asย โ€ฆ

Mehdi SALEM | Chemistry and Materials Science | Best Researcher Award

Mehdi SALEM | Chemistry and Materials Science | Best Researcher Award

Dr Mehdi SALEM, IMT Mines Albi, France

Dr. Mehdi Salem appears to be an excellent candidate for the Best Researcher Award due to his significant contributions in materials science and mechanical engineering, specifically in areas like thermal fatigue, high-temperature corrosion, and additive manufacturing. Below are key factors supporting his suitability:

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Strong Academic Background

Dr. Salem holds a Doctorate in Mechanical Engineering (2009) from Universitรฉ Paul Sabatier de Toulouse, with prior degrees in materials science and general engineering. His academic foundation is rooted in prestigious institutions, reflecting his depth in research capabilities.

Professional Experience

With over a decade of experience as a research engineer at Armines โ€“ IMT Mines Albi-Carmaux and extensive post-doctoral work, Dr. Salemโ€™s professional career focuses on high-impact research in material fatigue, metal forming processes, and additive manufacturing. His roles as a lecturer further demonstrate his academic leadership.

Expertise and Technical Contributions

His expertise spans advanced topics such as thermal fatigue, corrosion, residual stress evaluation, and additive manufacturing. His technical skills in simulation (e.g., MEF), microstructural analysis, and materials testing position him as a leading researcher in his field.

Publications and Impact

Dr. Salem’s publications, such as his work on thermal fatigue analysis and residual stresses in selective laser melting, have made a significant contribution to mechanical engineering and materials science, with citations demonstrating the relevance of his research. His published papers in top-tier journals like International Journal of Fatigue and Additive Manufacturing have garnered considerable citations, reflecting the impact of his research on both academic and industrial applications.

Multidisciplinary Collaboration

Collaborating with both academic and industrial entities, his research has addressed real-world challenges, such as improving machining quality and enhancing the durability of automotive components. His work on the effect of doum palm fibers and aluminizing on thermal fatigue demonstrates innovative problem-solving in diverse materials.

Research focus

M. Salemโ€™s research primarily focuses on thermal fatigue, additive manufacturing, and composite materials. His work spans analyzing thermal fatigue in automotive diesel pistons and hot work tool steels to improving additive manufacturing processes like selective laser melting and cold metal transfer. He also explores the mechanical and thermal properties of materials, including aluminum alloys and gypsum mortars reinforced with natural fibers. Another key aspect of his research involves developing innovative tools to enhance machining quality and reduce harmful particulate dispersion in composite materials. ๐Ÿ”ง๐Ÿ› ๏ธ๐Ÿ”ฅ๐ŸŒก๏ธ๐Ÿ“Š

Conclusion

Dr. Salemโ€™s deep expertise, demonstrated impact through highly cited publications, and his significant technical achievements in thermal fatigue, additive manufacturing, and residual stress analysis make him a standout candidate for the Best Researcher Award. His ongoing contributions to both academic research and industrial applications exemplify his leadership in the field of materials science.