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Poly (acrylic acid sodium) grafted carboxymethyl cellulose as a high performance polymer binder for silicon anode in lithium ion batteries

机译:聚丙烯酸钠接枝的羧甲基纤维素作为锂离子电池硅阳极的高性能聚合物粘合剂

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摘要

The design of novel binder systems is required for the high capacity silicon (Si) anodes which usually undergo huge volume change during the charge/discharge cycling. Here, we introduce a poly (acrylic acid sodium)-grafted-carboxymethyl cellulose (NaPAA-g-CMC) copolymer as an excellent binder for Si anode in lithium ion batteries (LIBs). The NaPAA-g-CMC copolymer was prepared via a free radical graft polymerization method by using CMC and acrylic acid as precursors. Unlike the linear, one-dimensional binders, the NaPAA-g-CMC copolymer binder is expected to present multi-point interaction with Si surface, resulting in enhanced binding ability with Si particles as well as with the copper (Cu) current collectors, and building a stable solid electrolyte interface (SEI) layer on the Si surface. The NaPAA-g-CMC based Si anode shows much better cycle stability and higher coulombic efficiency than those made with the well-known linear polymeric binders such as CMC and NaPPA.
机译:高容量硅(Si)阳极需要新颖的粘合剂系统设计,这种阳极通常在充电/放电循环过程中会发生巨大的体积变化。在这里,我们介绍了一种聚(丙烯酸钠)接枝的羧甲基纤维素(NaPAA-g-CMC)共聚物,作为锂离子电池(LIBs)中硅阳极的优良粘合剂。 NaPAA-g-CMC共聚物是通过自由基接枝聚合法以CMC和丙烯酸为前体制备的。与线性一维粘合剂不同,预计NaPAA-g-CMC共聚物粘合剂会与Si表面呈现多点相互作用,从而提高与Si颗粒以及铜(Cu)集流体的粘合能力,并且在Si表面上建立稳定的固体电解质界面(SEI)层。基于NaPAA-g-CMC的Si阳极显示出比使用众所周知的线性聚合物粘合剂(如CMC和NaPPA)制成的硅阳极更好的循环稳定性和更高的库伦效率。

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