Identifying Key Parameters for Mixed Organic Electrolytes for Lithium–Sulfur Battery

M Parekh, N Sapkota, B Henry, M Everette… - ACS Applied Energy …, 2025 - ACS Publications
Engineered electrolytes are critical for high-performance lithium–sulfur batteries (LSBs).
Present electrolyte selection for simultaneously forming a stable bilateral solid–electrolyte …

Solid electrolyte interphase growth in lithium metal cells with normal electrolyte flow

MN Parekh, CD Rahn - Frontiers in Chemical Engineering, 2022 - frontiersin.org
In high energy density lithium metal batteries (LMBs), dendrite and solid electrolyte
interphase (SEI) growth reduce safety and longevity, respectively. A stable SEI layer enables …

A snapshot review of electric field's role in crystallization at electrochemical interfaces

M Parekh, S Shan, M Sabet, CD Rahn, AM Rao - MRS Advances, 2024 - Springer
Dendrite growth on metal anodes, which results from uneven crystallization at
electrochemical interfaces, has prevented the widespread adoption of metal anode-based …

Normal electrolyte flow helps in controlling dendrite growth in zinc metal batteries

M Parekh, CD Rahn - ASME Power Conference, 2022 - asmedigitalcollection.asme.org
Zinc metal batteries are a widely considered alternative to lithium metal batteries that also
suffer from dendrite growth. We explore the effect of creeping normal electrolyte flow on …

Quintuple Thermal Model for All-Solid-State Batteries and Temperature Estimation through a Cascaded Thermal-Electrochemical Model

P Ferreira, SX Tang - 2024 IEEE Conference on Control …, 2024 - ieeexplore.ieee.org
This study introduces a novel quintuple thermal model for all-solid-state batteries, governed
by five Ordinary Differential Equations (ODEs) representing the temperatures of the case …