Arpit Verma
Aix-Marseille Université, Indian Institute of Technology Ropar, Babasaheb Bhimrao Ambedkar University Lucknow, University of Lucknow
About
Dr. Arpit Verma is currently a Post-Doctoral Fellow at Aix-Marseille Université, France, in the Matériaux Divisés, Interfaces, Réactivité, ÉLectrochimie (MADIREL) laboratory. Prior to this, he served as a Post-Doctoral Research Associate at the Indian Institute of Technology (IIT) Ropar, India, from June 2024 to May 2025. He earned his Ph.D. in Physics from Babasaheb Bhimrao Ambedkar University, Lucknow, in 2024, where he conducted his doctoral research in the Nanomaterials and Sensors Research Laboratory under the supervision of Prof. B. C. Yadav. He received his M.Sc. degree in Applied Physics from the same university in 2018. His research focuses on the design and development of advanced materials, including electron and hole transport layers for high-efficiency perovskite solar cells, 2D materials, metallopolymers, and nanohybrid structures. His work emphasizes their applications in energy harvesting, photodetection, and chemical and biosensing technologies. He is a lifetime member of the Indian Science Congress Association and the Materials Research Society of India. Dr. Verma has authored multiple peer-reviewed publications and remains actively engaged in interdisciplinary materials research.
Employment
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Aix-Marseille Université Post-doctoral fellow2025 - Present
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Indian Institute of Technology Ropar Post-doctoral Research Associate2024 - 2025
Education
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Babasaheb Bhimrao Ambedkar University Lucknow Phd2018 - 2024
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Babasaheb Bhimrao Ambedkar University Lucknow M.Sc. (Applied Physics)2016 - 2018
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University of Lucknow B.Sc. (Physics, Mathematics)2013 - 2016
Projects & Funding
Projects & funding information is unavailable.
Publications (76)
- Hybrid piezoelectric-triboelectric nanogenerators for flexible electronics: mechanisms, applications, and future prospects Save
- Effect of Low CdS Incorporation on the Humidity Sensing Characteristics of TiO2 Thick-Film Sensors Save
- Smart Materials for Green, Flexible, and Wearable Save
- Substrate-Engineered Charge Transport in Cu2S/WS2 Nanohybrid Self-Powered Photodetectors Save
- Two-dimensional layered metal oxides (2D LMOs) for next-generation electronic devices Save
- Interface‐Driven Performance Enhancement in Perovskite Solar Cells Using Oxygen‐Tuned Cu‐Doped NiOx Hole Transport Layer Save
- Humidity-induced self-powered photodetection through Bi2Te3/MoS2 nanohybrid material deposited on a flexible substrate Save
- Recent Advances in Self-Healing Electronic Materials for Energy Harvesting Devices Save
- Plasmon resonance enhanced Pd-decorated hybrid tungsten disulfide (WS2) multi-wavelength ultra-responsive photodetector Save
- Mechanistic Insights and Interface Engineering in Bi2O3/Ti3C2TX Nanohybrid for Enhanced CO2 Sensor Performance Save