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为锂离子电池硅基负极设计高效粘结剂:聚丙烯酸。

Toward efficient binders for Li-ion battery Si-based anodes: polyacrylic acid.

机构信息

School of Materials Science and Engineering and School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia, USA.

出版信息

ACS Appl Mater Interfaces. 2010 Nov;2(11):3004-10. doi: 10.1021/am100871y. Epub 2010 Nov 5.

Abstract

Si-based Li-ion battery anodes offer specific capacity an order of magnitude beyond that of conventional graphite. However, the formation of stable Si anodes is a challenge because of significant volume changes occurring during their electrochemical alloying and dealloying with Li. Binder selection and optimization may allow significant improvements in the stability of Si-based anodes. Most studies of Si anodes have involved the use of carboxymethylcellulose (CMC) and poly(vinylidene fluoride) (PVDF) binders. Herein, we show for the first time that pure poly(acrylic acid) (PAA), possessing certain mechanical properties comparable to those of CMC but containing a higher concentration of carboxylic functional groups, may offer superior performance as a binder for Si anodes. We further show the positive impact of carbon coating on the stability of the anode. The carbon-coated Si nanopowder anodes, tested between 0.01 and 1 V vs Li/Li+ and containing as little as 15 wt % of PAA, showed excellent stability during the first hundred cycles. The results obtained open new avenues to explore a novel series of binders from the polyvinyl acids (PVA) family.

摘要

硅基锂离子电池的阳极比传统石墨的比容量高出一个数量级。然而,由于在与 Li 的电化学合金化和去合金化过程中发生显著的体积变化,稳定的 Si 阳极的形成是一个挑战。选择和优化粘合剂可能会显著提高 Si 基阳极的稳定性。大多数 Si 阳极的研究都涉及使用羧甲基纤维素(CMC)和聚偏二氟乙烯(PVDF)粘合剂。在此,我们首次表明,具有某些机械性能且与 CMC 相当但含有更高浓度羧酸官能团的纯聚丙烯酸(PAA)作为 Si 阳极的粘合剂可能具有更好的性能。我们进一步表明,碳涂层对阳极稳定性有积极影响。在 0.01 至 1 V 相对于 Li/Li+ 的范围内测试的、含有低至 15wt%的 PAA 的碳涂层 Si 纳米粉末阳极,在最初的一百个循环中表现出优异的稳定性。这些结果为探索一系列新型的来自聚乙烯酸(PVA)家族的粘合剂开辟了新的途径。

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