Dr. Swati Deswal, Ph.D.
Postdoc working in energy harvesting domain with publications on Piezoelectric and triboelectric nanogenerators
Research Expertise
About
Publications
Flexible Composite Energy Harvesters from Ferroelectric A2MX4-Type Hybrid Halogenometallates
Chemistry of Materials / Jun 03, 2019
Deswal, S., Singh, S. K., Rambabu, P., Kulkarni, P., Vaitheeswaran, G., Praveenkumar, B., Ogale, S., & Boomishankar, R. (2019). Flexible Composite Energy Harvesters from Ferroelectric A2MX4-Type Hybrid Halogenometallates. Chemistry of Materials, 31(12), 4545–4552. https://doi.org/10.1021/acs.chemmater.9b01227
Neutral 1D Perovskite-Type ABX3 Ferroelectrics with High Mechanical Energy Harvesting Performance
Chemistry of Materials / Sep 15, 2020
Deswal, S., Singh, S. K., Pandey, R., Nasa, P., Kabra, D., Praveenkumar, B., Ogale, S., & Boomishankar, R. (2020). Neutral 1D Perovskite-Type ABX3 Ferroelectrics with High Mechanical Energy Harvesting Performance. Chemistry of Materials, 32(19), 8333–8341. https://doi.org/10.1021/acs.chemmater.0c02179
Seed Power: Natural Seed and Electrospun Poly(vinyl difluoride) (PVDF) Nanofiber Based Triboelectric Nanogenerators with High Output Power Density
ACS Applied Bio Materials / Jul 10, 2019
Singh, S. K., Kumar, P., Magdum, R., Khandelwal, U., Deswal, S., More, Y., Muduli, S., Boomishankar, R., Pandit, S., & Ogale, S. (2019). Seed Power: Natural Seed and Electrospun Poly(vinyl difluoride) (PVDF) Nanofiber Based Triboelectric Nanogenerators with High Output Power Density. ACS Applied Bio Materials, 2(8), 3164–3170. https://doi.org/10.1021/acsabm.9b00348
Third Harmonic Upconversion and Self-Trapped Excitonic Emission in 1D Pyridinium Lead Iodide
The Journal of Physical Chemistry C / Oct 11, 2021
Maqbool, S., Sheikh, T., Thekkayil, Z., Deswal, S., Boomishankar, R., Nag, A., & Mandal, P. (2021). Third Harmonic Upconversion and Self-Trapped Excitonic Emission in 1D Pyridinium Lead Iodide. The Journal of Physical Chemistry C, 125(41), 22674–22683. https://doi.org/10.1021/acs.jpcc.1c07639
Triboelectric Nanogenerators as Power Sources for Chemical Sensors and Biosensors
ACS Omega / Nov 29, 2022
Khandelwal, G., Deswal, S., & Dahiya, R. (2022). Triboelectric Nanogenerators as Power Sources for Chemical Sensors and Biosensors. ACS Omega, 7(49), 44573–44590. https://doi.org/10.1021/acsomega.2c06335
A Flexible Energy Harvester from an Organic Ferroelectric Ammonium Salt
Chemistry – An Asian Journal / Nov 10, 2021
Gupta, R., Sahoo, S., Deswal, S., Kothavade, P., Dixit, P., Zaręba, J. K., Shanmuganathan, K., & Boomishankar, R. (2021). A Flexible Energy Harvester from an Organic Ferroelectric Ammonium Salt. Chemistry – An Asian Journal, 16(24), 4122–4129. Portico. https://doi.org/10.1002/asia.202101128
Efficient Piezoelectric Energy Harvesting from a Discrete Hybrid Bismuth Bromide Ferroelectric Templated by Phosphonium Cation
Chemistry – A European Journal / Apr 28, 2022
Deswal, S., Panday, R., Naphade, D. R., Dixit, P., Praveenkumar, B., Zaręba, J. K., Anthopoulos, T. D., Ogale, S., & Boomishankar, R. (2022). Efficient Piezoelectric Energy Harvesting from a Discrete Hybrid Bismuth Bromide Ferroelectric Templated by Phosphonium Cation. Chemistry – A European Journal, 28(33). Portico. https://doi.org/10.1002/chem.202200751
Recent developments in 2D materials for energy harvesting applications
Journal of Physics: Energy / May 05, 2023
Khandelwal, G., Deswal, S., Shakthivel, D., & Dahiya, R. (2023). Recent developments in 2D materials for energy harvesting applications. Journal of Physics: Energy, 5(3), 032001. https://doi.org/10.1088/2515-7655/acc7c8
Molecular Ferroelectric Based Biocompatible Flexible Piezoelectric Pressure Sensor
IEEE Sensors Letters / Jun 01, 2023
Deswal, S., Khandelwal, G., & Dahiya, R. (2023). Molecular Ferroelectric Based Biocompatible Flexible Piezoelectric Pressure Sensor. IEEE Sensors Letters, 7(6), 1–4. https://doi.org/10.1109/lsens.2023.3280418
Design and Piezoelectric Energy Harvesting Properties of a Ferroelectric Cyclophosphazene Salt
Small / Jul 23, 2023
Deswal, S., Panday, R., Naphade, D. R., Cazade, P., Guerin, S., Zaręba, J. K., Steiner, A., Ogale, S., Anthopoulos, T. D., & Boomishankar, R. (2023). Design and Piezoelectric Energy Harvesting Properties of a Ferroelectric Cyclophosphazene Salt. Small, 19(46). Portico. https://doi.org/10.1002/smll.202300792
Transparent Piezoelectric Nanogenerator for Self-Powered Force Sensing Applications
IEEE Sensors Letters / May 01, 2023
Nair, N. M., Deswal, S., & Dahiya, R. (2023). Transparent Piezoelectric Nanogenerator for Self-Powered Force Sensing Applications. IEEE Sensors Letters, 7(5), 1–4. https://doi.org/10.1109/lsens.2023.3272768
Metal-Organic Frameworks Based Chemical Sensors
Encyclopedia of Materials: Electronics / Jan 01, 2023
Khandelwal, G., Deswal, S., & Dahiya, R. (2023). Metal-Organic Frameworks Based Chemical Sensors. In Encyclopedia of Materials: Electronics (pp. 36–53). Elsevier. https://doi.org/10.1016/b978-0-12-819728-8.00121-2
Ferroelectric polymers for energy harvesting
Organic Ferroelectric Materials and Applications / Jan 01, 2022
Han, Z., & Wang, Q. (2022). Ferroelectric polymers for energy harvesting. In Organic Ferroelectric Materials and Applications (pp. 503–533). Elsevier. https://doi.org/10.1016/b978-0-12-821551-7.00011-7
Education
PhD, Chemistry / February, 2022
MSc, Chemistry / July, 2017
University of Delhi
BSc, Chemistry / July, 2015
Experience
North Carolina State University, USA
Postdoc / April, 2023 — Present
University of Glasgow, UK
Postdoc / March, 2022 — March, 2023
Links & Social Media
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