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Charge Storage in Polymer Acid-Doped Polyaniline-Based Layer-by-Layer Electrodes

机译:聚合物酸掺杂聚苯胺基层状电极中的电荷存储

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Polymeric electrodes that can achieve high doping levels and store charge reversibly are desired for electrochemical energy storage because they can potentially achieve high specific capacities and energies. One such candidate is the polyaniline:poly(2-acrylamido-2-methyl-l-propanesulfonic acid) (PANI:PAAMPSA) complex, a water-processable complex obtained via template polymerization that is known to reversibly achieve high doping levels at potentials of up to 4.5 V versus Li/Li~+. Here, for the first time, PANI:PAAMPSA is successfully incorporated into layer-by-layer (LbL) electrodes. This processing technique is chosen for its ability to blend species on a molecular level and its ability to conformally coat a substrate. Three different polyaniline-based LbL electrodes comprised of PANI/PAAMPSA, PANI/PANLPAAMPSA, and linear poIy(ethylenimine)/PANI:PAAMPSA are compared in terms of film growth, charge storage, and reversibility. We found that the reversibility of PANLPAAMPSA is retained within the LbL electrodes and that the PANI/PANLPAAMPSA electrode exhibits the best performance in terms of capacity and cycle life. These results provide general guidelines for the assembly of PANLPAAMPSA in LbL films and also demonstrate their potential as electrochemically active components in electrodes,
机译:能够实现高掺杂水平并可逆地存储电荷的聚合物电极是电化学能量存储所需要的,因为它们可以潜在地实现高比容量和能量。一种这样的候选物是聚苯胺:聚(2-丙烯酰胺基-2-甲基-1-丙烷磺酸)(PANI:PAAMPSA)配合物,这是一种通过模板聚合获得的水可加工的配合物,已知该复合物可在以下条件下可逆地实现高掺杂水平:相对于Li / Li〜+高达4.5 V.在这里,PANI:PAAMPSA首次成功地集成到了逐层(LbL)电极中。选择该处理技术是因为其在分子水平上混合物质的能力以及保形地涂覆基底的能力。比较了由PANI / PAAMPSA,PANI / PANLPAAMPSA和线性聚(乙烯亚胺)/ PANI:PAAMPSA组成的三种不同的基于聚苯胺的LbL电极的膜生长,电荷存储和可逆性。我们发现PANLPAAMPSA的可逆性保留在LbL电极内,并且PANI / PANLPAAMPSA电极在容量和循环寿命方面表现出最佳性能。这些结果为PANLPAAMPSA在LbL膜中的组装提供了通用指南,还证明了其作为电极中电化学活性成分的潜力,

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