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用于硅纳米颗粒阳极的瓜尔胶粘合剂:将粘合剂流变学与电极性能相关联。

Guar Gel Binders for Silicon Nanoparticle Anodes: Relating Binder Rheology to Electrode Performance.

作者信息

Dufficy Martin K, Corder Ria D, Dennis Kimberly A, Fedkiw Peter S, Khan Saad A

机构信息

Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, North Carolina 27695, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 3;13(43):51403-51413. doi: 10.1021/acsami.1c10776. Epub 2021 Oct 19.

Abstract

Binding agents are a critical component of Si-based anodes for lithium-ion batteries. Herein, we introduce a composite hydrogel binder consisting of carbon black (CB) and guar, which is chemically cross-linked with glutaraldehyde as a means to reinforce the electrode structure during lithiation and improve electronic conductivity. Dynamic rheological measurements are used to monitor the cross-linking reaction and show that rheology plays a significant role in binder performance. The cross-linking reaction occurs at a faster rate and produces stronger networks in the presence of CB, as evidenced from higher gel elastic modulus in guar + CB gels than guar gels alone. Silicon nanoparticle (SiNP) electrodes that use binders with low cross-link densities ( < 2 days) demonstrate discharge capacities ∼1200 mAh g and Coulombic efficiencies >99.8% after 300 cycles at 1-C rate. Low cross-link densities likely increase the capacity of SiNP anodes because of binder-Si hydrogen-bonding interactions that accommodate volume expansions. In addition, the cross-linked binder demonstrates the potential for self-healing, as evidenced by an increased elastic modulus after the gel was mechanically fragmented, which may preserve the electrode microstructure during lithiation and increase capacity retention. The composite hydrogel with integrated conductive additives gives promise to a new type of binder for next-generation lithium-ion batteries.

摘要

粘结剂是锂离子电池硅基负极的关键组成部分。在此,我们介绍一种由炭黑(CB)和瓜尔胶组成的复合水凝胶粘结剂,它通过与戊二醛进行化学交联,作为一种在锂化过程中增强电极结构并提高电子导电性的方法。动态流变学测量用于监测交联反应,并表明流变学在粘结剂性能中起着重要作用。交联反应在CB存在下以更快的速率发生并产生更强的网络,瓜尔胶+CB凝胶中的凝胶弹性模量高于单独的瓜尔胶凝胶就证明了这一点。使用低交联密度(<2天)粘结剂的硅纳米颗粒(SiNP)电极在1-C倍率下循环3次后,放电容量约为1200 mAh/g,库仑效率>99.8%。低交联密度可能会提高SiNP负极的容量,这是因为粘结剂与硅之间的氢键相互作用能够适应体积膨胀。此外,交联粘结剂表现出自我修复的潜力,凝胶在机械破碎后弹性模量增加就证明了这一点,这可能会在锂化过程中保留电极微观结构并提高容量保持率。具有集成导电添加剂的复合水凝胶为下一代锂离子电池带来了一种新型粘结剂的希望。

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