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◆ The Journal of Physical Chemistry C2025-11-03· Tracking (education)

Tracking Spatiotemporal Electric Potential in Batteries Using High-Resolution <i>Operando</i> X-ray Transmission Imaging

Emily E. Abdo, Vivaan Patel, Sarah A. Hesse, Alexander V. Dudchenko, Ross Arthur, Christopher J. Takacs, Nitash P. Balsara

原始摘要(英文原文)· Original abstract
The formation of significant concentration gradients across electrolytes in batteries affects the rate at which electrochemical reactions occur. In this work, we use high-resolution operando X-ray transmission imaging to capture spatiotemporal salt concentration profiles c ( x, t ) in a symmetric cell comprising a polymer electrolyte sandwiched between two lithium–indium alloy electrodes during a constant-current experiment followed by open-circuit relaxation. The decay of open-circuit potential is related to the concentration dependence of the potential across concentration cells, U . We show how operando c ( x, t ) data can be used to calculate the spatiotemporal electric potential “inside” the polarized electrolyte. We track the spatial- and time-dependent cell potential during the constant-current step and distinguish its two contributions: a concentration overpotential governed by U . and an ohmic contribution governed by ionic conductivity. Over most of the time window, the concentration overpotential dominates. At steady state, it is a factor of 7 larger than the ohmic contribution. Such findings indicate that efforts to design new polymer electrolytes should focus on minimizing concentration gradients.
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Tracking Spatiotemporal Electric Potential in Batteries Using High-Resolution <i>Operando</i> X-ray Transmission Imaging — 科研速览 Science Skim