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A semi-fluid multi-functional binder for a high-performance silicon anode of lithium-ion batteries

机译:一种用于锂离子电池高性能硅负极的半流体多功能粘结剂

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Currently, a variety of binders are developed to inhibit the rapid capacity fading of Si. The Si anodes are mainly enhanced by the chemical bonding effect on the surface of conventional solid-state binders. However, with a huge volume change of silicon, solid binders are easily deactivated. Herein, a semi-fluid binder termed GPC is designed based on a viscoelastic crosslinking network with abundant active sites and self-healing performance. The backbone of the binder network is in situ synthesized using guar gum (GG), polyacrylic acid (PAA), and citric acid (CA). Serving as the flexible joints and the plasticizer of the network, CA small molecules remarkably improve the viscoelasticity of the binder to tolerate the volume change of Si via rearranging particles in the network during cycling. Moreover, CA can form a layer of surface coating on Si to stabilize the SEI for long-term electrochemical performance. As a result, the Si@GPC electrode shows excellent cycling stability and exhibits a superb capacity of 1292 mA h g−1 after 1000 cycles at 2 A g−1. This work illustrates the advantages and prospects of designing semi-fluid binders for high-performance batteries.
机译:目前,开发各种绑定抑制硅的快速能力减弱。阳极主要是由化学增强对传统的表面粘结的影响固态绑定。改变硅的,坚实的绑定很容易停用。GPC是基于粘弹性设计的交联网络丰富活跃的网站和自愈性能。粘合剂网络是原位合成用瓜尔豆口香糖(GG)、聚丙烯酸(PAA)和柠檬酸(CA)。网络的增塑剂,CA小分子显著改善的粘弹性粘合剂容忍如果通过的体积变化重新安排粒子在网络骑自行车。涂层如果稳定长期的SEI电化学性能。Si@GPC电极显示优秀的自行车稳定和展览1292年出色的能力马h g−1 1000年以后周期在2 g−1。说明了的优势和前景设计高性能的半流体绑定电池。

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