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Dual-crosslinked network binder of alginate with polyacrylamide for silicon/graphite anodes of lithium ion battery

机译:海藻酸盐与聚丙烯酰胺的双交联网络粘合剂,用于锂离子电池的硅/石墨阳极

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In lithium ion batteries, high-capacity anodes that undergo very large volume change during charge/discharge cycles are needed to apply a strongly adhesive polymer binder due to the severe mechanical stress developed during the cycles. Although bio-derived alginate is known to be a potential candidate for the binder owing to its strong mechanical property, it can be improved using a number of modifications such as physical crosslinking. Here, we propose a significantly better method of improving the electrochemical performance of the binder by introducing dual-crosslinked alginate with polyacrylamide. The polyacrylamide provides strong adhesion in the electrode with resistance to the penetration of the organic electrolyte. Both ionic and covalent crosslinkings in the binder maintain their intrinsic good binding properties and additionally enhance lithium ion diffusion. More interestingly, an in-situ electrochemical dilatometer study indicates that the dual-crosslinked binder is considerably helpful to prevent volume expansion beyond the inevitable value caused by active materials in electrodes during the cycle. Consequently, the Si/C (1/3) electrode retains nearly 840 mAh g(-1) high capacity even after one hundred cycles with excellent cycleability.
机译:在锂离子电池中,由于在循环中产生了严重的机械应力,因此需要在充电/放电循环中经历非常大的体积变化的高容量阳极以施加强粘合力的聚合物粘合剂。尽管由于其强大的机械性能,已知生物来源的藻酸盐是粘合剂的潜在候选者,但可以使用许多修饰(例如物理交联)来改进它。在这里,我们提出了一种通过引入双交联海藻酸酯和聚丙烯酰胺改善粘合剂电化学性能的更好方法。聚丙烯酰胺在电极中具有很强的附着力,并能抵抗有机电解质的渗透。粘合剂中的离子和共价交联都保持其固有的良好粘合性能,并进一步增强了锂离子的扩散。更有趣的是,原位电化学膨胀计研究表明,双交联粘合剂在循环过程中对防止体积膨胀超出电极中活性材料引起的不可避免值有很大帮助。因此,即使经过一百次循环,Si / C(1/3)电极仍可保持近840 mAh g(-1)的高容量,循环性能极佳。

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