About
Dr. Rashmi Singh is an Assistant Professor of Physics at GLA University, Mathura, India. She received her Ph.D. in Physics from Indian Institute of Information Technology Allahabad. Her research focuses on advanced functional materials for energy and environmental applications, combining experimental nanomaterials research with computational materials modeling.
Her work includes thin-film fabrication, nanomaterial synthesis, and characterization techniques such as X-ray diffraction and UV–Visible spectroscopy. In recent years, her research has increasingly focused on first-principles studies of chalcogenide and halide perovskites for photovoltaic and energy-conversion applications.
Dr. Singh has authored numerous peer-reviewed publications in international journals on nanomaterials, environmental remediation materials, and computational studies of emerging semiconductors. Her current interests include density functional theory–based materials design, sustainable energy materials, and next-generation nanostructured devices.
Employment
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GLA University
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (33)
- Investigation of a potential photovoltaic absorber based on first principles spectroscopic screening of chalcogenide perovskites: CaZrX3 (X = S, Se) Save
- Emerging Pollutants in Soil and Water: Sources, Risks, and Advances in Removal Technologies for Sustainable Management Save
- Graphene materials in pollution trace detection and environmental improvement Save
- Study of chalcogenide-based metal perovskites BaZrX3 (X = S and Se): DFT insight into fundamental properties for sustainable energy generation using AMPS-1D Save
- Physical properties and power conversion efficiency of SrZrX3 (X = S and Se) chalcogenide perovskite solar cell Save
- Lead-free alternative cation (Ethylammonium) in organometallic perovskites for thermoelectric applications Save
- Highly efficient and stable Ra2LaNbO6 double perovskite for energy conversion device applications Save
- Exploring properties of organometallic double perovskite (CH3NH3)2AgInCl6: A novel material for energy conversion devices Save
- Examining Ultrasensitive Nanobiosensors for Identifying Life-threatening Illnesses with Biological Objects,Вивчення ультрачутливих нанобіосенсорів для ідентифікації небезпечних для життя хвороб за допомогою біологічних об’єктів Save
- Emission characteristics of the slowest target protons produced in the interaction of 84Kr nuclei with emulsion nuclei at 1 A GeV Save