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October 23, 2025ACS Applied Materials & Interfaces9 citationsOpen Access

Overcoming Chemo-Mechanical Instability at Silicon-Solid Electrolyte Interfaces in Solid-State Batteries

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LKLammi Terefe KitabaYNYosef NikodimosSMSemaw Kebede Merso

Key Points

  • The composite anode achieved high discharge/charge capacities of 3499/2994 mAh g–1.
  • X-ray photoelectron spectroscopy highlighted the protective role of LiF-rich SEI at silicon interfaces.
  • Incorporating graphene improves electronic and ionic conductivity, maintaining stability.
  • Overall, silicon-based composite anodes may advance energy storage solutions for lithium-ion batteries.

Abstract

Silicon is the preferred choice for lithium-ion battery anodes due to its high theoretical capacity and low lithiation potential. However, achieving high areal capacity with silicon anodes in solid-state batteries (SSBs) is challenging because of poor electronic and ionic conductivity, as well as chemo-mechanical instability at the silicon|solid electrolyte (Si|SE) interfaces. Here, we propose fabricating and testing composite anodes made of nanosized Si powder embedded in partially fluorinated graphene (Si-FG) and Li6PS5Cl (LPSCl) sulfide SE. X-ray photoelectron spectroscopy revealed that the in situ formation of LiF-rich SEI can protect against SE decomposition at the interface in the Si-FG-LPSCl composite anode. FIB-SEM and EIS analyses also indicate a stable structure and low interfacial resistance after one cycle for a composite anode containing FG. The incorporation of partially FG enhances both electronic (through heterojunction formation with Si) and ionic conductivities, buffers significant volume changes, and ensures chemo-mechanical stability in the composite anode. The Si-FG-LPSCl composite anode in SSBs delivered high discharge/charge capacities of 3499/2994 mAh g–1 at a C-rate of C/20 and an ICE of 85.6% in a half cell. This work provides valuable insights for advancing high-capacity Si composite anodes to meet future energy needs.

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Cite This Study

Kitaba et al. (2025) studied this question.

synapsesocial.com/papers/68f9bad6d7353cfcfc68f460https://doi.org/10.1021/acsami.5c11621
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