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Bottom-Up Electrochemical Deposition of Poly(styrene sulfonate) on Nanoarchitectured Electrodes

机译:纳米建筑电极聚(苯乙烯磺酸盐)的自下而上的电化学沉积

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摘要

The cathodic deposition of poly(styrene sulfonate) on nanoarchitectured TiO2 electrodes is explored by cyclic voltammetry and potentiostatic and galvanostatic experiments, showing a diffusion-controlled deposition described by Cottrell's law. The structure and composition of the polymer is evidenced by various spectroscopic techniques, including nuclear magnetic resonance, Fourier transform infrared, and X-ray photoelectron spectroscopy, and its morphology is studied by scanning electron microscopy. The average chain length can be estimated from the NMR spectra. The electropolymerization mechanism initiates by radical anion formation. The cycling behavior in half-cell batteries against Li metal is excellent, especially at high rates explored up to 10 C. The areal insertion capacity is above recent literature results, up to 80 mu A h cm(-2). The combination of normalized areal power density and areal energy density is one of the best reported in the literature.
机译:通过循环伏安法和电位静脉抑制的实验探索聚(苯乙烯磺酸盐)对纳米建筑TiO2电极的阴极沉积,显示Cottrell定律描述的扩散控制沉积。 聚合物的结构和组合物通过各种光谱技术证明,包括核磁共振,傅里叶变换红外和X射线光电子能力,通过扫描电子显微镜研究其形态。 可以从NMR光谱估计平均链长。 电聚合机理通过自由基阴离子形成引发。 对Li金属的半电池电池中的循环行为优异,特别是在高达10℃的高利率下。面积插入能量高于最近的文献结果,高达80μmHcm(-2)。 标准化的区域功率密度和区域能量密度的组合是文献中最好的报道之一。

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