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Dr. Palwinder Kaur l Battery safety
| Young Scientist Award

CSIR-Central Scientific Instruments Organization, Chandigarh | India

Dr. Palwinder Kaur is a dedicated researcher and WISE-SCOPE Scientist Fellow at CSIR-Central Scientific Instruments Organisation (CSIR-CSIO), Chandigarh, specializing in gas sensor development, battery safety, and electrochemical impedance spectroscopy (EIS). She earned her Ph.D. in Engineering Sciences and has accumulated over five years of research experience in developing intelligent, multivariable gas sensors integrated with machine learning for early detection of volatile organic compounds (VOCs) and thermal runaway in lithium-ion batteries. Her work focuses on designing innovative impedimetric sensors that contribute to predictive diagnostics and sustainable safety solutions for batteries and environmental monitoring. Dr. Kaur has authored five indexed publications, including notable papers in ACS Sensors, Batteries, and Journal of Physical Chemistry C, with a citation count of 36 (as per Scopus, October 2025), 29 citing documents, and an h-index of 3. She holds two patents (U.S. and Indian) and has completed four research projects and two industry collaborations, bridging the gap between laboratory research and industrial applications. Her international collaboration with the ViPER Group at Purdue University (2021–2022), supported by the SERB Overseas Fellowship, significantly advanced early gas diagnostics for battery safety research. Through her innovative contributions and interdisciplinary expertise, Dr. Kaur continues to impact the fields of sensor technology, electrochemical analysis, and energy safety research in India and globally.

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Featured Publications

Kaur, P., Bhondekar, A. P., & Bagchi, S. (2025, September 19). Intra-class classification of volatile amines using impedance spectroscopy platform [Preprint]. ChemRxiv. https://doi.org/10.26434/chemrxiv-2025-jpsdn-v2

Kaur, P., Bagchi, S., & Bhondekar, A. P. (2025, August 8). Intra-class classification of amines using impedance spectroscopy with a SnO₂-Ppy composite-based sensor [Preprint]. ChemRxiv. https://doi.org/10.26434/chemrxiv-2025-jpsdn

Kaur, P., Bagchi, S., Pol, V. G., & Bhondekar, A. P. (2023). Early detection of mixed volatile organic compounds to circumvent calamitous Li-ion battery thermal runaway. Journal of Physical Chemistry C, 127(36), 17241–17251. https://doi.org/10.1021/acs.jpcc.3c01470

Kaur, P., Stier, I. K., Bagchi, S., Pol, V. G., & Bhondekar, A. P. (2023). Impedimetric early sensing of volatile organic compounds released from Li-ion batteries at elevated temperatures. Batteries, 9(12), 562. https://doi.org/10.3390/batteries9120562

Kaur, P., Bagchi, S., & Bhondekar, A. P. (2023, January 23). Impedimetric study of poly-butyl thiophene-based sensor for detection of VOCs and mixtures. 2023 IEEE Applied Sensing Conference (APSCON). https://doi.org/10.1109/apscon56343.2023.10101185

Palwinder Kaur | Battery safety | Young Scientist Award

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