Rajlakshmi T. Purkayastha, Ph.D.

Affiliations: 
2013 Materials University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
Applied Mechanics, Energy, Materials Science Engineering
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"Rajlakshmi Purkayastha"

Parents

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Robert Maxwell McMeeking grad student 2013 UC Santa Barbara
 (Micromechanical Modeling of Storage Particles in Lithium Ion Batteries.)
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Publications

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Hunt I, Zhang T, Patel Y, et al. (2018) The effect of current inhomogeneity on the performance and degradation of Li-S batteries Journal of the Electrochemical Society. 165
Waluś S, Offer G, Hunt I, et al. (2018) Volumetric expansion of Lithium-Sulfur cell during operation – Fundamental insight into applicable characteristics Energy Storage Materials. 10: 233-245
Fotouhi A, Auger DJ, Propp K, et al. (2017) Lithium–Sulfur Cell Equivalent Circuit Network Model Parameterization and Sensitivity Analysis Ieee Transactions On Vehicular Technology. 66: 7711-7721
Knap V, Stroe DL, Swierczynski MJ, et al. (2016) A self-discharge model of Lithium-Sulfur batteries based on direct shuttle current measurement Journal of Power Sources. 336: 325-331
Purkayastha R, McMeeking R. (2016) Stress due to the intercalation of lithium in cubic-shaped particles: a parameter study Meccanica. 51: 3081-3096
Wild M, O'Neill L, Zhang T, et al. (2015) Lithium sulfur batteries, a mechanistic review Energy and Environmental Science. 8: 3477-3494
Purkayastha R, McMeeking R. (2013) A parameter study of intercalation of lithium into storage particles in a lithium-ion battery Computational Materials Science. 80: 2-14
Purkayastha RT, McMeeking RM. (2012) The use of non-dimensional parameters to study stress in lithiumion battery electrode storage particles Asme International Mechanical Engineering Congress and Exposition, Proceedings (Imece). 6: 417-421
Purkayastha R, McMeeking RM. (2012) A Linearized Model for Lithium Ion Batteries and Maps for their Performance and Failure Journal of Applied Mechanics. 79
Purkayastha RT, McMeeking RM. (2012) An integrated 2-D model of a lithium ion battery: The effect of material parameters and morphology on storage particle stress Computational Mechanics. 50: 209-227
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