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首页> 外文期刊>Synthetic Metals >Influence of boron content on the structure and capacitive properties of electrospun polyacrylonitrile/pitch-based carbon nanofiber composites
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Influence of boron content on the structure and capacitive properties of electrospun polyacrylonitrile/pitch-based carbon nanofiber composites

机译:硼含量对电纺 - 聚丙烯腈/沥青基碳纳米纤维复合材料的结构和电容性能

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摘要

Electrospun boron-enriched PAN/pitch-based CNF composites (PPB) are developed by combining B2O3 as the boron source, and pitch and polyacrylonitrile as the carbon precursor, to introduce surface boron heteroatoms and enhance the electrical conductivity in CNF composites. PPB-10 electrodes prepared from 10 wt% B2O3 added to the PAN/pitch solution exhibit a high specific capacitance of 180 Fg(-1) at a discharge current density of 1 mAcm(-2) and energy density of 22.0-15.8 Whkg(-1) in the power density range of 400-10,000 W kg(-1) in 6 M KOH aqueous electrolyte, owing to the larger amount of heteroatoms such as boron and the addition of the pitch, thereby inducing fast and reversible surface redox reactions in aqueous electrolyte. Furthermore, the highly mesoporous PPB-10 composite offers 92% capacity retention of the initial current density and a low equivalent series resistance through quick pathways for ion transport and charge diffusion. Hence, these PPB composites exhibit a very promising potential as electrode materials for supercapacitor electrodes due to boron incorporated into the carbon framework, suitable porosity, and good electrical conductivity.
机译:通过将B2O3作为硼源组合,沥青和聚丙烯腈作为碳前体组合来开发Electur纺富含富含植物的CNF复合材料(PPB),以引入表面硼杂原子并增强CNF复合材料中的电导率。从加入到锅/沥青溶液中加入的10wt%B2O3制备的PPB-10电极在1mmm(-2)的放电电流密度为180fg(-1)的高比电容和22.0-15.8 WHKG的能量密度( -1)在6M KOH水溶液中400-10,000W kg(-1)的功率密度范围内,由于诸如硼的杂原子和加入间距,因此诱导快速且可逆的表面氧化还原反应在水性电解质中。此外,高介孔的PPB-10复合材料通过用于离子运输和电荷扩散的快速途径提供92%的容量保留和通过快速途径提供初始电流密度和低等效串联电阻。因此,由于掺入碳骨架中的硼,合适的孔隙率和良好的导电性,这些PPB复合材料表现出非常有希望的超级电容器电极的电极材料。

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