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用于锂离子电池硅基电极的协同交联粘合剂:对机械性能和电化学性能的有益影响

Coordinatively Cross-Linked Binders for Silicon-Based Electrodes for Li-Ion Batteries: Beneficial Impact on Mechanical Properties and Electrochemical Performance.

作者信息

Huet Lucas, Mazouzi Driss, Moreau Philippe, Dupré Nicolas, Paris Michael, Mittelette Sébastien, Laurencin Danielle, Devic Thomas, Roué Lionel, Lestriez Bernard

机构信息

Institut des Matériaux de Nantes Jean Rouxel, IMN, Nantes Université, CNRS, Nantes F-44000, France.

Centre Énergie, Matériaux, Télécommunications (EMT), Institut National de la Recherche Scientifique (INRS), Varennes J3X 1S2, Canada.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 29;15(12):15509-15524. doi: 10.1021/acsami.3c00186. Epub 2023 Mar 14.

Abstract

A simple and versatile preparation of Zn(II)-poly(carboxylates) reticulated binders by the addition of Zn(II) precursors (ZnSO, ZnO, or Zn(NO)) into a preoptimized poly(carboxylic acids) binder solution is proposed. These binders lead systematically to a significantly improved electrochemical performance when used for the formulation of silicon-based negative electrodes. The formation of carboxylate-Zn(II) coordination bonds formation is investigated by rheology and FTIR and NMR spectroscopies. Mechanical characterizations reveal that the coordinated binder offers a better electrode coating cohesion and adhesion to the current collector, as well as higher hardness and elastic modulus, which are even preserved in the presence of a carbonate solvent (i.e., in battery operation conditions). Ultimately, as shown from operando dilatometry experiments, the electrode expansion during lithiation is reduced, mitigating electrode mechanical failure. Such coordinatively reticulated electrodes outperform their uncoordinated counterparts with an improved capacity retention of over 30% after 60 cycles.

摘要

本文提出了一种简单且通用的制备方法,通过向预先优化的聚羧酸粘结剂溶液中添加锌(II)前驱体(硫酸锌、氧化锌或硝酸锌)来制备锌(II)-聚羧酸盐网状粘结剂。当用于配制硅基负极时,这些粘结剂能系统地显著提高电化学性能。通过流变学、傅里叶变换红外光谱和核磁共振光谱研究了羧酸盐-锌(II)配位键的形成。力学表征表明,配位粘结剂能提供更好的电极涂层内聚力和对集流体的附着力,以及更高的硬度和弹性模量,即使在存在碳酸盐溶剂的情况下(即在电池运行条件下)这些性能也能得以保持。最终,从原位膨胀计实验可以看出,锂化过程中电极的膨胀减小,减轻了电极的机械故障。这种配位网状电极的性能优于未配位的同类电极,在60次循环后容量保持率提高了30%以上。

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