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首页> 外文期刊>ACS applied materials & interfaces >Fabrication of an Inexpensive Hydrophilic Bridge on a Carbon Substrate and Loading Vanadium Sulfides for Flexible Aqueous Zinc-Ion Batteries
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Fabrication of an Inexpensive Hydrophilic Bridge on a Carbon Substrate and Loading Vanadium Sulfides for Flexible Aqueous Zinc-Ion Batteries

机译:碳基材廉价亲水桥的制造,加载柔性锌离子电池硫化物

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摘要

Coupling electrode materials with carbon substrates to construct flexible aqueous Zn-ion batteries (ZIBs) with excellent electrochemical performance is an attractive research focus. However, further improving the Zn2+/electron diffusion kinetics in such systems is still desirable. Herein, we present a novel hydrophilic carbon substrate that employs acid-treated natural halloysite and carbon nanotubes for the first time as structural and interfacial modifiers for loading V3S4 as a composite cathode (denoted as HCC-V3S4) for flexible ZIBs. The devices exhibit a high specific capacity of 148 mA h.g(-1) under a current density of 0.5 A.g(-1) (95% retention after 200 cycles), excellent rate performance, and a high energy density of 155.7 W h.kg(-1), together with a high-power density of 5000 W.kg(-1). The promising electrochemical property can be associated with the formation of the hydrophilic surface/interface and with the good conductivity of the composite electrode, which increases the Zn2+/electron transmission rate. Owing to the cost-effective design of the flexible substrate and the ZIB's impressive electrochemical performance, the fabricated device shows good potential applications in portable and wearable electronics.
机译:用碳基材的耦合电极材料构建具有优异电化学性能的柔性锌离子电池(Zibs)是一种吸引人的研究重点。然而,进一步改善这种系统中的Zn2 + /电子扩散动力学仍然是理想的。在此,我们提出了一种新的亲水性碳基质,首次使用酸处理的天然霍氏矿石和碳纳米管作为用于将V3S4作为复合阴极(表示为HCC-V3S4)的结构和界面改性剂,用于柔性ZIBS。该器件在电流密度为0.5吨(-1)的电流密度(200次循环后95%的保留),优异的速率性能和高能量密度为155.7WH.kg,该装置在电流密度下表现出高特异性容量。 (-1),高功率密度为5000W.kg(-1)。有希望的电化学性能可以与亲水表面/界面的形成和复合电极的良好导电性相关联,这增加了Zn2 + /电子传输速率。由于柔性基板和Zib令人印象深刻的电化学性能的成本效益设计,所制造的装置在便携式和可穿戴电子设备中显示出良好的潜在应用。

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