METS uses frequency-dependent thermal waves from electrochemical heating to measure solvation entropy, charge-transfer resistance, and interfacial transport resistance at individual electrodes in operating lithium-ion cells.
Combined economic and technological evaluation of battery energy storage for grid applications,
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Depth-resolved measurement of solvation entropy, interfacial transport and charge-transfer kinetics of practical lithium-ion batteries
METS uses frequency-dependent thermal waves from electrochemical heating to measure solvation entropy, charge-transfer resistance, and interfacial transport resistance at individual electrodes in operating lithium-ion cells.