Amreen Hussain | Optical Sensors | Research Excellence Award

Research Excellence Award

Amreen Hussain
Affiliation Institute for Plasma Research, India
Country India
Scopus ID 55814328400
Documents 24
Citations 566
h-index 11
Subject Area Optical Sensors
Event Global Sensor Awards

Amreen Hussain
Institute for Plasma Research, India

Amreen Hussain is a plasma physicist and materials scientist serving as Scientific Officer–E and Assistant Professor (HBNI) at the Institute for Plasma Research (IPR), Gandhinagar, India. Her research focuses on plasma-assisted synthesis of hybrid nanocomposites, perovskite optoelectronic devices, and plasma electrolysis systems for green hydrogen production.

Abstract

This article presents the academic and research profile of Dr. Amreen Ara Hussain, highlighting her contributions to plasma processing, hybrid nanocomposite thin films, perovskite optoelectronic devices, and plasma electrolysis for sustainable hydrogen production. With over 600 citations and significant funded research projects, her work integrates materials science, applied plasma physics, and renewable energy technologies.

Keywords

Plasma Processing; Perovskite Solar Cells; Hybrid Nanocomposites; Optoelectronic Devices; Plasma Electrolysis; Green Hydrogen; Thin Film Deposition; Energy Conversion Materials.

Introduction

Dr. Hussain earned her Ph.D. in Physics from Gauhati University in collaboration with IASST, Assam, in 2017. She has held postdoctoral and faculty positions at IIT Indore, IPR, and UNIST (South Korea). Her academic trajectory demonstrates consistent excellence in plasma-assisted material synthesis and optoelectronic device engineering.

Research Profile

  • 20+ peer-reviewed journal publications
  • 02 patents (1 granted, 1 filed)
  • 04 book chapters (Springer & Elsevier)
  • Multiple nationally funded research projects exceeding INR 1 Crore
  • Reviewer for leading journals including ACS, Wiley, Elsevier, and RSC

Research Contributions

Her research spans plasma-enhanced chemical vapor deposition (PECVD), magnetron sputtering, plasma polymerization, and nanocomposite synthesis. She has pioneered lead-free perovskite photodetectors enabling self-powered broadband response and developed plasma electrolyzers for hydrogen production.

Publications

Dr. Hussain has published in high-impact journals including ACS Applied Materials & Interfaces, Nanoscale, Applied Physics Letters, Journal of Materials Chemistry C, Scientific Reports, and Journal of Materials Science. Her cumulative impact factor exceeds 84 with an average IF of 4.23.

Research Impact

Her contributions to sustainable energy materials and plasma technologies have resulted in 633 citations and an h-index of 11. Her work has been highlighted by Royal Society of Chemistry collections, DST Vigyan Prasar, and multiple scientific media platforms.

Award Suitability

Dr. Hussain is a recipient of the Parvez Guzdar Young Scientist Award (2023) and multiple Best Presenter awards. Her leadership in INSPIRE Faculty projects and plasma-based green hydrogen technologies demonstrates strong eligibility for research excellence awards in energy and advanced materials domains.

Conclusion

Dr. Amreen Ara Hussain’s interdisciplinary expertise in plasma surface engineering and optoelectronic materials positions her among leading researchers advancing sustainable energy solutions through innovative material science and plasma technologies.

References

  1. Hussain, A.A. et al. Publications in ACS Applied Materials & Interfaces, Nanoscale, Applied Physics Letters and related journals (2012–2026).
  2. DST INSPIRE Faculty Award Project Records, Government of India.
  3. Institute for Plasma Research (IPR) Research Reports and Newsletter Highlights.

Assist. Prof. Dr. Patima Nizamidin | Waveguide Sensor Awards | Best Researcher Award

Assist. Prof. Dr. Patima Nizamidin | Waveguide Sensor Awards | Best Researcher Award

Assist. Prof. Dr. Patima Nizamidin, Xinjiang University, China

Patima Nizamidin is a researcher in analytical chemistry specializing in optical waveguide gas sensors, metal-organic framework (MOF) thin films, and the adsorption and transformation of environmental pollutants. She earned her Ph.D. from Xinjiang University, where she has been working in the College of Chemistry since September 2013. Her research focuses on developing advanced gas sensing materials and investigating adsorption kinetics. She has led multiple research projects funded by the National Natural Science Foundation of China and the Xinjiang Uygur Autonomous Region. Patima has published extensively in high-impact journals, contributing significant advancements in optical gas sensing technologies.

Professional Profile:

SCOPUS

Summary of Suitability for Best Researcher Award – Patima Nizamidin

Patima Nizamidin is a highly qualified candidate for the Best Researcher Award based on her strong academic background, extensive research contributions, and impact in analytical chemistry and optical gas sensing.

🎓 Education & Work Experience

  • Ph.D. in Analytical Chemistry from Xinjiang University, China.
  • 👩‍🏫 Work Experience:
    • 2013.09 – Present: Working in the College of Chemistry, Xinjiang University, China.

🏆 Achievements & Research Contributions

  • 🔬 Research Interests:

    • Optical waveguide gas sensors.
    • Metal-organic framework (MOF) thin films and gas adsorption mechanisms/kinetics.
    • Adsorption and transformation of environmental pollutants.
  • 📑 Scientific Research Projects:

    • National Natural Science Foundation of China (NSFC) Grants:
      • (Grant No. 22464018) (2025/01-2028/12).
      • (Grant No. 22164019) (2022/01-2025/12).
    • 🏅 Natural Science Foundation of Xinjiang Uygur Autonomous Region (2021/06-2024/06).
    • 🎓 Youth Foundation of the Education Department of Xinjiang Uygur Autonomous Region (2019/09-2021/07).
  • 📚 Notable Publications:

    • Published multiple high-impact journal papers in Sensors & Actuators B: Chemical, Advanced Optical Materials, Optical & Laser Technology, Journal of Chemical Physics, and more.
    • Research focuses on MOF-based optical gas sensors, optical waveguides, and gas adsorption studies.

🏅 Awards & Honors

  • 🔬 Recognized for outstanding research contributions in the field of analytical chemistry and gas sensing technology.
  • 🏆 Recipient of prestigious NSFC grants for cutting-edge research in optical gas sensing.
  • 🎖 Multiple high-impact publications, contributing significantly to the advancement of MOF-based sensors.

Publication Top Notes:

A Nanoporous Covalent Organic Framework Film-Based Optical Waveguide Sensor for H2S Gas Detection

Rapid development of Nb-BIPA-TC-MOF film based optical wave- guides for the ‘turn-on-off’ detection of acidic-basic gases

Fast fabrication, gas sense characteristics and kinetics of cubic Ti-BIPA-TC-MOF film composite optical waveguides

Gas sensing properties of a maghemite-coupled porphyrin thin film–based optical waveguide sensor