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◆ ACS Applied Materials & Interfaces2025-10-15· Materials science

Dual-Dynamic Biomimetic Binder for High-Performance Silicon Anodes

Yuanzhi Liu, Keming Hou, Jiatong Li, Cheng Lian, Yazhuo Shang, Haiping Su, Honglai Liu

原始摘要(英文原文)· Original abstract
Silicon (Si) has received widespread attention in recent years due to its high theoretical specific capacity (4200 mAh g –1 ) and low deembedded lithium potential, making it a highly promising anode material. However, Si materials undergo significant volume expansion after multiple cycles, leading to rapid capacity decay in practical applications. In this study, a dynamically dual-cross-linked biomimetic binder (CMCS/PA@Fe) was developed by forming a coordination compound between protocatechuic aldehyde (PA) and Fe 3+ and then combining it with carboxymethyl chitosan (CMCS). Inspired by the adhesive mechanism of mussels, the catechol structure in PA can provide strong adhesion, and Fe 3+ introduced through coordination increases the ionic conductivity of the composite material. In addition, the dual-dynamically reversible chemical bonds in the CMCS/PA@Fe binder, namely, Schiff base bonds and coordination bonds, form a dual-buffering mechanism, which effectively suppressed the volume expansion of the Si anode during cycling, relieved the stress inside the electrode, and induced the generation of a stabile solid electrolyte interface layer, thereby resulting in excellent electrochemical performance. After 500 cycles at a high current rate of 4 A g –1, the electrode capacity can still maintain 1184.9 mAh g –1, showing that CMCS/PA@Fe is a strong candidate for next-generation Si anode binders.
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