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一种用于高负载锂离子电池硅阳极的弹性交联粘合剂。

An Elastic Cross-Linked Binder for Silicon Anodes in Lithium-Ion Batteries with a High Mass Loading.

作者信息

Zhang Shiyun, Liu Kai, Xie Jian, Xu Xiongwen, Tu Jian, Chen Weixiang, Chen Fang, Zhu Tiejun, Zhao Xinbing

机构信息

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, China.

LI-FUN Technology Corporation Limited, Zhuzhou, Hunan 412000, China.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 8;15(5):6594-6602. doi: 10.1021/acsami.2c16997. Epub 2023 Jan 27.

Abstract

Due to the urgent demand for lithium-ion batteries (LIBs) with a high energy density, silicon (Si) possessing an ultrahigh capacity has aroused wide attention. However, its practical application is seriously hindered by enormous volume changes of the Si anode during cycling. Developing novel binders suitable for the Si anode has proven to be an effective strategy to improve its electrochemical performance. Herein, we constructed a three-dimensional network binder, in which the polyacrylic acid (PAA) long chains are cross-linked with one kind of amino acid, lysine (Lys). The abundant polar groups in PAA/Lys enable it to tightly adhere to the Si particles via hydrogen bonds, and the cross-linked structure prevents irreversible slipping of the PAA chains upon volume variation of the particles. The Si used was obtained from a sustainable route by recycling photovoltaic waste silicon. With high elasticity and strong adhesion, the PAA/Lys binder can effectively keep the structural integrity of the Si electrode and improve its electrochemical performance. The Si electrode using the PAA/Lys binder exhibits a good cycling stability (1008 mAh g at 2 A g after 250 cycles). Even with a high mass loading of 3.03 mg cm, the Si anode can remain stable for 100 cycles at a high fixed areal capacity of 3.03 mAh cm. This work gives a practical method to make stable Si electrodes using sustainable Si source and environmentally friendly amino acid-based binders.

摘要

由于对高能量密度锂离子电池(LIBs)的迫切需求,具有超高容量的硅(Si)引起了广泛关注。然而,硅负极在循环过程中的巨大体积变化严重阻碍了其实际应用。开发适用于硅负极的新型粘结剂已被证明是提高其电化学性能的有效策略。在此,我们构建了一种三维网络粘结剂,其中聚丙烯酸(PAA)长链与一种氨基酸赖氨酸(Lys)交联。PAA/Lys中丰富的极性基团使其能够通过氢键紧密粘附在硅颗粒上,并且交联结构可防止颗粒体积变化时PAA链发生不可逆滑动。所用的硅是通过回收光伏废硅以可持续的方式获得的。PAA/Lys粘结剂具有高弹性和强粘附性,能够有效保持硅电极的结构完整性并改善其电化学性能。使用PAA/Lys粘结剂的硅电极表现出良好的循环稳定性(250次循环后在2 A g下为1008 mAh g)。即使在3.03 mg cm的高质量负载下,硅负极在3.03 mAh cm的高固定面积容量下仍可稳定循环100次。这项工作提供了一种实用方法,可利用可持续的硅源和环境友好的氨基酸基粘结剂制备稳定的硅电极。

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