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Understanding the redox effects of amine and hydroxyl groups of p-aminophenol upon the capacitive performance in KOH and H2SO4 electrolyte

机译:了解胺和对氨基苯酚的羟基的氧化还原效应对KOH和H2SO4电解质中电容性能的影响

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摘要

As a dual functional redox additive, p-aminophenol (abbr. PAP) simultaneously possessing hydroxyl and amine groups has been incorporated into KOH or H2SO4 electrolyte. It reveals that the PAP concentration and cell configuration play crucial roles in the determination of capacitive behaviors. PAP substance can release two protons and two electrons in KOH solution, whereas one proton and one electron occur in H2SO4 solution. The incorporation of PAP into KOH or H2SO4 solution can markedly elevate the specific capacitance, energy density and both of which remain high cycling stabilities. When designating 15 mmol L-1 PAP in KOH or H2SO4 solution, the increase folds in capacitance are of 2.2 and 1.4, respectively, and the correlative energy densities can reach up to 7.24, and 8.44 Wh kg(-1), respectively. What's more, the redox process in KOH solution is controlled by the surface reaction, while the one in H2SO4 solution indicates the semi-infinite diffusion mechanism. (C) 2016 Elsevier B.V. All rights reserved.
机译:作为双功能氧化还原添加剂,同时具有羟基和胺基的对氨基苯酚(简称PAP)已被掺入KOH或H2SO4电解质中。它表明,PAP浓度和电池配置在确定电容行为中起着至关重要的作用。 PAP物质可以在KOH溶液中释放两个质子和两个电子,而在H2SO4溶液中则存在一个质子和一个电子。将PAP掺入KOH或H2SO4溶液中可以显着提高比电容,能量密度,并且两者均保持较高的循环稳定性。当在KOH或H2SO4溶液中指定15 mmol L-1 PAP时,电容的增加倍数分别为2.2和1.4,相关能量密度分别可以达到7.24和8.44 Wh kg(-1)。此外,KOH溶液中的氧化还原过程受表面反应控制,而H2SO4溶液中的氧化还原过程则表明了半无限扩散机制。 (C)2016 Elsevier B.V.保留所有权利。

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