Ruchika Thayil | Nanoscience | Best Scholar Award

Ms. Ruchika Thayil | Nanoscience | Best Scholar Award

Doctoral Student at National Institute of Technology Goa, India

Ruchika Thayil is a dedicated researcher in material science with expertise in low-dimensional nanomaterials and their applications in sensing, environmental, and antimicrobial technologies. She has been recognized for her academic achievements and contributions to research through prestigious awards and scholarships. Her work aims to bridge the gap between fundamental research and practical applications, particularly in developing innovative solutions for environmental and health challenges.

Professional Profile

Education 🎓

Ruchika Thayil is currently a Doctoral Researcher in the Department of Applied Sciences at the National Institute of Technology (NIT) Goa, India. She earned her B.Sc. in Physics from Carmel College of Arts, Science, and Commerce for Women, Nuvem-Goa, and completed her M.Sc. in Physics from Goa University, India..

Research Interests:

Ruchika’s primary research interests lie in material science, specifically the synthesis and characterization of nanostructured materials and 2D materials such as molybdenum dichalcogenides. Her research focuses on the development of high-performance gas sensors capable of detecting harmful gases at room temperature, SERS-based sensors, and microwave-absorbing materials. She has also explored antimicrobial studies and the use of nanomaterials for environmental applications, including the removal of harmful organic dyes from water.

 

Professional Experience:

Ruchika has been actively involved in research focused on advanced material science, particularly nanostructured and low-dimensional materials. She has published nine high-impact journal papers and presented her findings at several international conferences. Her work has been recognized with the INSPIRE Award from the Department of Science and Technology (DST) and a scholarship from the Japan Science and Technology Agency (JST) to participate in the SUKURA Science Exchange Programme. She is also a member of professional organizations, including SPIE and the Sukura Science Club of Japan.

Top Notes Publications 📚

1. Tuning MoS2 nanostructures for superior room-temperature toluene sensing

Journal: Talanta Open
Year: 2025
Volume: 11
Article Number: 100402

  • Focuses on tuning MoSâ‚‚ nanostructures for detecting toluene gas at room temperature.
  • Open access; citation details are unavailable yet.

2. Biofunctionalized magnetic nanoparticles incorporated MoS2 nanocomposite for enhanced n-butanol sensing at room temperature

Journal: Scientific Reports
Year: 2024
Volume: 14
Issue: 1
Article Number: 24508

  • Explores a biofunctionalized MoSâ‚‚-based nanocomposite with magnetic nanoparticles for effective n-butanol sensing.
  • Citations: 1

3. Tuning ZnSe nanostructures for enhanced ammonia sensing at room temperature

Journal: Materials Letters
Year: 2024
Volume: 371
Article Number: 136919

  • Investigates ZnSe nanostructures for efficient ammonia gas sensing at ambient temperatures.
  • Citations: 6

4. Recent advances and prospects on MoX2 (X=S, Se, Te) nanostructure-based sensors for room temperature gas detection: A review

Journal: Surfaces and Interfaces
Year: 2024
Volume: 52
Article Number: 104966

  • A comprehensive review on the development of MoXâ‚‚ (X=S, Se, Te) nanostructures in gas sensing technologies.
  • Citations: 6

5. Exploring the multifunctionality of MoS2 and MoSe2 nanostructures: Enhanced ammonia sensing, antimicrobial activity, and organic dye adsorption

Journal: Microchemical Journal
Year: 2024
Volume: 204
Article Number: 111175

  • Highlights the versatility of MoSâ‚‚ and MoSeâ‚‚ in various applications, including ammonia sensing, antimicrobial effectiveness, and dye adsorption.
  • Citations: 3

Conclusion

Ms. Ruchika Thayil is a highly deserving candidate for the Best Scholar Award due to her innovative research, strong publication record, and contributions to addressing critical challenges in environmental and health sciences. Her achievements, international exposure, and recognition through prestigious awards make her a competitive contender for this accolade. Enhancing her global impact, collaborative engagements, and leadership roles can further solidify her position as a top scholar in her field.

Waqas Ahmad | 2D materials | Best Researcher Award

Dr. Waqas Ahmad | 2D materials | Best Researcher Award

Dr. Waqas Ahmad, University of Electronic Science and Technology of China

Dr. Waqas Ahmad’s profile demonstrates a strong background in optical engineering, semiconductor devices, and 2D materials, making him a suitable candidate for the Research for Best Researcher Award. Below is an analysis of his qualifications and experience, formatted by section with a concluding statement for each:

Publication profile

Education 🎓

Dr. Ahmad holds a Doctor of Engineering in Optical Engineering from Shenzhen University, China, where he ranked in the top 5% of his class. His research focused on low-dimensional materials-based optoelectronic devices, culminating in a dissertation on the application of 2D/2D van der Waals heterostructures in photodetectors. He also earned a Master of Science in Electronic Engineering from International Islamic University, Islamabad, and a Bachelor of Science in Electronics from Government College University, Lahore, both with high academic standing.

Research Experience 🔬

Dr. Ahmad’s postdoctoral work at UESTC and Songshan Lake Materials Laboratory involves pioneering research in 2D materials, focusing on developing next-generation photodetectors and field-effect transistors. His earlier research at the College of Optoelectronic Engineering and as a Research Assistant at IIUI further solidified his expertise in optoelectronic properties and semiconductor devices. He has also mentored students, contributing to the academic community.

Grants & Awards 🏆

Dr. Ahmad has been recognized with several scholarships and awards, including the prestigious Shenzhen Universiade International Scholarship Foundation and a fully-funded doctoral scholarship at Shenzhen University. These awards are a testament to his academic excellence and research potential.

Research Interests 📚

Dr. Ahmad’s research interests lie in developing new 2D heterostructures, characterizing their optoelectrical properties, and applying these materials in functional devices like field-effect transistors and photodetectors. His focus on innovative materials and their applications in optoelectronics and energy is at the forefront of current research trends.

Publication Top Notes

  • Flexible UV photodetector based on graphite/titanium dioxide through facile transfer of pencil drawn graphite films on desired substrates 📝 Ceramics International (2024)
  • Insight mechanism of MXene for the future generation of highly efficient energy storage device 🔋 Materials Today Sustainability (2024) – Cited by: 1
  • Rational design of 3D porous phosphorus-carbide with excellent optical performance and energy storage application 🌟 Journal of Power Sources (2024) – Cited by: 1
  • Recent progress, challenges, and opportunities in 2D materials for flexible displays 📱 Nano Today (2024) – Cited by: 2
  • Ultrasensitive Near-Infrared Polarization Photodetectors with Violet Phosphorus/InSe van der Waals Heterostructures 📸 ACS Applied Materials and Interfaces (2024) – Cited by: 4
  • Exploring the mechanical and structural properties of B4C/ZrO2 strengthened Al-Mg-Cr alloy hybrid composites 🔩 Journal of Alloys and Compounds (2024)
  • Interlayer Charge Transition and Broadband Polarization Photodetection and Imaging Based on In2Se3/ReS2 van der Waals Heterostructure đź“· Laser and Photonics Reviews (2024)
  • Advancements in Optoelectronics: Harnessing the Potential of 2D Violet Phosphorus đź’ˇ Advanced Functional Materials (2024)
  • Two-dimensional azulenoid kekulene-based metallic allotropes for energy storage applications ⚡ Journal of Materials Chemistry A (2024)
  • Recent Advances in Non-Ti MXenes: Synthesis, Properties, and Novel Applications đź§Ş Advanced Science (2024)

Conclusion

Dr. Waqas Ahmad’s solid academic background, significant research experience, and recognition through prestigious awards make him a highly suitable candidate for the Research for Best Researcher Award. His work in 2D materials and optoelectronic devices demonstrates the potential for future innovations in the field, meeting the award’s standards for excellence in research.