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Comprehensive Understanding of High Polar Polyacrylonitrile as an Effective Binder for Li-Ion Battery Nano-Si Anodes

机译:高极性聚丙烯腈作为锂离子电池纳米硅阳极的有效粘合剂的全面理解

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摘要

Well-defined polyacrylonitriles (PANs) with different molecular weights were synthesized through an activator regenerated by electron transfer atom-transfer radical polymerization method and employed as binders in silicon negative electrode for lithium-ion batteries. Compared with poly(vinylidene fluoride) and carboxyl methyl cellulose as binders, the electrode performance of PANs is well-improved. Specifically, at 100 mA from 0.01 to 1.5 V, the initial discharge capacity of PAN100-based electrode is 4147.8 mA h g(-1) and still remains about 1639.6 mA h g(-1) over 50 cycles. A comprehensive understanding on the improvement mechanism is preliminarily discussed. The results indicate that the superior performance largely depends on the higher lithium ion diffusion efficiency in PAN which results from the weak interaction between lithium ions and PAN polymer chain, and the hydrogen bonds among the nitrile group (C N) of PAN, Si nanoparticles, and the current collector, which will lead to an efficient coating of PAN with the Si particles and well-improved adhesion strength, synergistically depressing the structural deterioration of silicon electrodes.
机译:通过电子转移原子转移自由基聚合法再生的活化剂合成了分子量明确的聚丙烯腈(PANs),并用作锂离子电池硅负极的粘结剂。与聚偏二氟乙烯和羧甲基纤维素作为粘合剂相比,PANs的电极性能得到了很好的改善。具体而言,在0.01至1.5 V的100 mA电流下,基于PAN100的电极的初始放电容量为4147.8 mA h g(-1),并且在50个循环中仍保持约1639.6 mA h g(-1)。初步讨论了对改进机制的全面理解。结果表明,优异的性能很大程度上取决于PAN中较高的锂离子扩散效率,这是由于锂离子与PAN聚合物链之间的相互作用较弱以及PAN,Si纳米颗粒和PAN的腈基(CN)之间的氢键所致。集流体,这将导致有效地覆盖有硅颗粒的PAN和充分提高的粘合强度,从而协同抑制硅电极的结构劣化。

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