首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Low-crystalline tungsten trioxide anode with superior electrochemical performance for flexible solid-state asymmetry supercapacitor
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Low-crystalline tungsten trioxide anode with superior electrochemical performance for flexible solid-state asymmetry supercapacitor

机译:具有卓越的电化学性能的低结晶钨三氧化物阳极,用于柔性固态不对称超级电容器

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摘要

Previous research on pseudocapacitive anodes has been focused on well-crystallized transition metal oxides and their cycling stability and rate performance is often limited by the difficulty in contracting or expanding, sluggish ion diffusion and penetration restrictions. Here, the effects of crystallinity on the electrochemical properties of WO3 are investigated by comparing the behavior of low-crystallinity tungsten trioxide (LC-WO3) with highly crystalline tungsten trioxide (HC-WO3). The results show that LCWO3 with plenty of structural defects and disorder provides facilitated redox reactions and a capacitivedominant energy storage property, thus offering a higher specific capacitance (474 F g(-1)) and an enhanced capacitance retention performance compared to HC-WO3. Further assembling a flexible solid-state asymmetry SC, based on LC-WO3 in situ grown on porous carbon cloth, achieves an energy density of 7.6 mW h cm(-3) and an excellent cycling stability with a 92% capacitance retention after 10 000 cycles. These results demonstrate a new approach for developing high-performance pseudocapacitive anode materials for advanced SCs, and hold promise for low-cost flexible electronics.
机译:对赝阳极以前的研究一直侧重于充分结晶的过渡金属氧化物和它们的循​​环稳定性和速率的性能往往被承包或扩大,呆滞离子扩散和渗透限制的难度限制。这里,WO 3的电化学特性的结晶的效果通过比较低结晶性的三氧化钨(LC-WO 3)的具有高度结晶三氧化钨(HC-WO 3)的行为的影响。结果表明,用大量的结构缺陷和病症提供促进氧化还原反应和capacitivedominant能量存储属性,LCWO3,从而提供较高的比电容(474 F G(-1)),并且与HC-WO3一个增强的电容保持性能。进一步装配柔性固态不对称SC,基于在生长在多孔碳布原位LC-WO 3,实现了7.6毫瓦高厘米的能量密度(-3),并用92%的电容保持10 000后优异的循环稳定性周期。这些结果表明,用于开发先进的SC高性能赝负极材料的低成本柔性电子的新方法,并有希望。

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    Zhejiang Univ Inst Catalysis Adv Mat &

    Catalysis Grp Hangzhou 310028 Zhejiang Peoples R China;

    Zhejiang Univ Inst Catalysis Adv Mat &

    Catalysis Grp Hangzhou 310028 Zhejiang Peoples R China;

    Zhejiang Univ Inst Catalysis Adv Mat &

    Catalysis Grp Hangzhou 310028 Zhejiang Peoples R China;

    Zhejiang Univ Inst Catalysis Adv Mat &

    Catalysis Grp Hangzhou 310028 Zhejiang Peoples R China;

    Zhejiang Univ Inst Catalysis Adv Mat &

    Catalysis Grp Hangzhou 310028 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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