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首页> 外文期刊>Journal of power sources >Use of carbon and AlPO4 dual coating on H2Ti12O25 anode for high stability hybrid supercapacitor
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Use of carbon and AlPO4 dual coating on H2Ti12O25 anode for high stability hybrid supercapacitor

机译:在H2Ti12O25阳极上使用碳和AlPO4双重涂层作为高稳定性混合超级电容器

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We fabricated the cylindrical hybrid supercapacitors using the pristine H2Ti12O25, carbon coated H2Ti12O25, AIPO(4) coated H2Ti12O25, AlPO4-carbon hybrid coated H2Ti12O25, and AlPO4-carbon dual coated H2Ti12O25 as anodes. The electrochemical performances and thermal stability of the hybrid super capacitors with different surface-modified anodes were investigated. The uniform and ultrathin dual coated H2Ti12O25 maximizes the electrochemical performances with superior thermal stability. The dual coating layer acts as a bridge for the Li ion diffusion and electron conduction and as a barrier to suppress swelling phenomenon from HF attack. Moreover, the partially AIF(3) areas at AlPO4 layer, due to the reaction with HF, have positive effects on electrochemical performances. Therefore, the novel design composed of carbon and AlPO4 can be regarded as an effective strategy for anode used in hybrid supercapacitors. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们使用原始的H2Ti12O25,碳涂层的H2Ti12O25,AIPO(4)涂层的H2Ti12O25,AlPO4-碳混合涂层的H2Ti12O25和AlPO4-碳双重涂层的H2Ti12O25制作了圆柱型混合超级电容器。研究了具有不同表面改性阳极的混合超级电容器的电化学性能和热稳定性。均匀且超薄的双重涂层H2Ti12O25具有出色的热稳定性,可最大限度地提高电化学性能。双重涂层充当锂离子扩散和电子传导的桥梁,并作为抑制因HF侵蚀而产生的溶胀现象的屏障。此外,由于与HF反应,AlPO4层上的部分AIF(3)区域对电化学性能有积极影响。因此,由碳和AlPO4组成的新颖设计可以被视为混合超级电容器中阳极的有效策略。 (C)2016 Elsevier B.V.保留所有权利。

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