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Updated: Jun 10, 2025

In Situ Neutron Powder Diffraction Using Custom-made Lithium-ion Batteries
Published on: November 10, 2014
Capacity recovery by transient voltage pulse in silicon-anode batteries
Yufei Yang1, Srija Biswas1, Rong Xu1
1Department of Materials Science and Engineering, Stanford University, Stanford, CA 94305, USA.
Abstract:
In the quest for high-capacity battery electrodes, addressing capacity loss attributed to isolated active materials remains a challenge. We developed an approach to substantially recover the isolated active materials in silicon electrodes and used a voltage pulse to reconnect the isolated lithium-silicon (LiSi) particles back to the conductive network. Using a 5-second pulse, we achieved >30% of capacity recovery in both Li-Si and Si-lithium iron phosphate (Si-LFP) batteries. The recovered capacity sustains and replicates through multiple pulses, providing a constant capacity advantage. We validated the recovery mechanism as the movement of the neutral isolated LiSi particles under a localized nonuniform electric field, a phenomenon known as dielectrophoresis.
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