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首页> 外文期刊>Advanced materials interfaces >Integrating Effect of Surface Modification of Microporous Carbon by Phosphorus/Oxygen as well as the Redox Additive of p-Aminophenol for High-Performance Supercapacitors
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Integrating Effect of Surface Modification of Microporous Carbon by Phosphorus/Oxygen as well as the Redox Additive of p-Aminophenol for High-Performance Supercapacitors

机译:用磷/氧的表面改性表面改性表面改性的影响以及高性能超级电容器对氨基苯酚的氧化还原添加剂

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摘要

In present work, commercial microporous carbon materials are modified on the surface with phosphorus/oxygen species by using phytic acid as sole dopant, which plays crucial effect on the carbon structure, wettability, electrical conductivity, and capacitive behaviors. It reveals that with increasing the content of heteroatoms, the porosity and contact angle are decreased but the conductivity turns much larger. Furthermore, p-aminophenol is introduced to serve as redox additive, which can produce more active surface sites by forming hydrogen bond and complexation with the surface functional groups, further providing additional pseudo-capacitance. As a result, the energy density of carbon sample by phosphorus/oxygen doping in 1 m H2SO4 electrolyte with p-aminophenol is as high as 9.2 Wh kg(-1), which is 2.6 than that of pristine carbon. What is more, in terms of the simple operation and effective performance, the integration of surface modification toward carbon materials and redox additive can be favorable for largely enhancing the supercapacitor performance.
机译:在目前的工作中,通过使用植物/氧物种作为唯一掺杂剂,在表面上修饰商业微孔碳材料,这对碳结构,润湿性,导电性和电容性行为起着至关重要的影响。揭示随着杂原子的含量增加,孔隙率和接触角减小,但电导率变大。此外,将p-氨基苯酚引入用作氧化还原添加剂,其可以通过形成氢键和与表面官能团的络合来产生更多的活性表面位点,进一步提供额外的伪电容。结果,磷样品通过磷/氧气掺杂在1M H 2 SO 4电解质中的能量密度高达9.2WH kg(-1),其比原始碳的2.6%。更重要的是,在简单的操作和有效性能方面,表面改性对碳材料和氧化还原添加剂的整合可以有利于大量增强超级电容器性能。

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