首页> 外文会议>International Conference on Advanced Ceramics and Composites >HETEROGENEOUS MANGANESE OXIDE-ENCASED CARBON NANOCOMPOSITE FIBERS FOR HIGH PERFORMANCE PSEUDOCAPACITORS
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HETEROGENEOUS MANGANESE OXIDE-ENCASED CARBON NANOCOMPOSITE FIBERS FOR HIGH PERFORMANCE PSEUDOCAPACITORS

机译:用于高性能假偶联剂的异质锰氧化碳纳米复合纤维

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The integration of transition metal oxide nanocrystals and one-dimensional (1D) conducting carbon structures to generate their hybrids can create unpredictable new physical and chemical properties in comparison with single phase components. Here we report the fabrication of heterogeneous MnO nanocrystal (NC)-encased hierarchical carbon nanocomposite fibers (MCNFs) via a novel and large-scale Forcespinning followed by low temperature carbonization. Manganese nitrate containing polyvinylpyrrolidone (PVP) polymeric fiber was carbonized at relatively low temperature, i.e. 500 °C due to oxidant Mn~(2+) cations. Different inward and outward ionic diffusion rates of Mn~(2+) cations concurrently result in congregating MnO NCs near the surface region of the nanocomposites during thermolysis. After anodic and cyclic voltammetric electrochemical oxidations, in situ phase transformation from electrochemically inactive MnO NCs to pseudocapacitive MnO_x counterparts occurs, which yields a MnO_x NC/carbon hybrid fiber network with MnO_x NC-enriched functional surface. These NCs are accessible to aqueous electrolyte ions for Faradic redox reactions. Therefore these unique nanocomposites demonstrate a promising potential as pseudocapacitive electrode materials.
机译:过渡金属氧化物的纳米晶体和一维(1D)导电的碳结构的融合,以产生它们的杂交可以与单相分量比较创建新不可预知的物理和化学性质。这里,我们报告异构的MnO纳米晶体的制造(NC)-encased通过一种新颖的和大规模Forcespinning随后低温碳化分层碳纳米复合纤维(MCNFs)。含有聚乙烯吡咯烷酮(PVP)聚合物纤维硝酸锰在相对低的温度下炭化,即500℃,由于氧化剂的Mn〜(2+)的阳离子。的Mn〜的不同向内和向外的离子的扩散率(2+)的阳离子同时产生的热解过程中的MnO聚集的NC纳米复合材料的表面区域附近。阳极和循环伏安电化学氧化,原位相变从电化学惰性的MnO的NC后赝MnO_x同行发生,这将产生一个MnO_x NC /碳混合光纤网络与MnO_x NC-富集功能面。这些NC之间都以水电解质离子对法拉第氧化还原反应进行访问。因此,这些纳米复合材料的独特表现出有前途的潜在作为伪电容的电极材料。

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