Shivangi Srivastava
Indian Institute of Technology Madras, University of Lucknow
About
Research demands high attention to detail and accuracy. As a research scholar majoring in Physics, I understand the great responsibility of scientific research. I have been exposed to the intricate nature of scientific discovery and trained to think like a future researcher and also my lab experiences have taught me how to build a hypothesis and develop a method of inquiry. During lab work, experiments did not always work the first time. I sought feedback from my supervisor about how to refine my technique, always striving for better results. My attention to detail allowed me to reach great heights in my premed coursework and I am ready to apply the skills I have learned to a serious research project.My interests and competencies reach beyond academia and can help me become a valuable member of your research team. While research demands high levels of scientific expertise and knowledge, research also requires paperwork and financial support from the state – my background can help advance our research in this regard.
Employment
Employment history is unavailable.
Education
-
Indian Institute of Technology Madras National Postdoctoral Fellow2025 - Present
-
Indian Institute of Technology Madras Postdoctoral Researcher2025 - 2025
-
Indian Institute of Technology Madras Senior Research Fellow2024 - 2024
-
University of Lucknow Research Scholar2020 - 2024
Projects & Funding
Projects & funding information is unavailable.
Publications (12)
- Silver-Doped UiO-66 Metal–Organic Framework as U-Bent Optical Fiber Nanocoating for Trace Cadmium Ions Sensing in Wastewater Save
- V2O5/rGO Nanohybrid-Coated Fiber Optic Sensor for Subppb Detection of Nickel Ions Save
- Room-temperature operable Bi2YO3 chemiresistor for rapid H2S detection Save
- Synergistic MnO₂–TiO₂ nanocomposite chemiresistor for selective and sensitive breath acetone sensing in diabetes diagnostics Save
- V2O5-rGO nanohybrid sensor for highly sensitive room-temperature detection of toluene: A potential diagnostic tool for lung cancer via exhaled human breath Save
- Fabrication of Highly Sensitive YCeO Chemo-resistive Gas Sensor for Selective Detection of CO2 Save
- Development of V2O5@GO (1D/2D) nanohybrid based chemiresistor for low-trace of toluene Save
- Development of highly sensitive SnO2@ZnO based chemiresistor for Ammonia sensing Save
- Development of Yttrium-Cerium Oxide Gas Sensor for Low ppm Hydrogen Detection Save
- Catalytic Dye Degradation of Textile Dye Methylene Blue by Using Silver Nanoparticles Fabricated by Sustainable Approach Save