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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A high-capacity aqueous Zn-ion hybrid energy storage device using poly(4,4 '-thiodiphenol)-modified activated carbon as a cathode material
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A high-capacity aqueous Zn-ion hybrid energy storage device using poly(4,4 '-thiodiphenol)-modified activated carbon as a cathode material

机译:使用聚(4,4'-硫代碘醇)制碳作为阴极材料的高容量锌离子混合能量存储装置

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Aqueous electrochemical energy storage devices have advantages in terms of high safety, low cost, and environmental benignity, yet a major drawback is the low energy density compared to those using organic electrolytes. Here, we report an aqueous Zn-ion hybrid energy storage device (ZIHESD) using poly(4,4 '-thiodiphenol, TDP)-modified nanoporous activated carbon (AC) as the cathode material. The introduction of this redox-active polymer can largely enhance the energy storage capacity. Compared to the Zn//AC cell, the use of the poly(4,4 '-TDP)/AC cathode leads to not only a wide voltage window, as broadened from 0.2-1.8 V to 0.1-1.9 V, but also an approximately three-fold increased areal capacity. The capacity retention is 71% after 2000 cycles. Also, a group of ZIHESDs with different AC mass loadings in the cathode are tested. A maximum areal capacity of 1.16 mA h cm(-2) is achieved. Furthermore, a flexible quasi-solid-state cell encapsulated in a flat pouch shows stable electrochemical performance when repeatedly bent at large angles. The cell shows sustained powering capability after being partially cut by using scissors. The energy storage mechanism is discussed in detail.
机译:水化学能量存储装置在高安全性,低成本和环境良性方面具有优点,但与使用有机电解质的人相比,主要缺点是低能量密度。这里,我们使用聚(4,4'-硫代碘醇,TDP)制型纳米多孔活性炭(AC)作为阴极材料来报告Zn离子混合能量存储装置(ZIHESD)。这种氧化还原活性聚合物的引入可以在很大程度上提高能量储存能力。与Zn // AC电池相比,使用聚(4,4'--TDP)/交流阴极导致宽电压窗口,从0.2-1.8V扩大到0.1-1.9 V,而且大约三倍增加的面积容量。 2000年循环后容量保留为71%。此外,测试了一组具有阴极中具有不同AC质量载荷的Zihi度。实现了1.16mA H cm(-2)的最大成分容量。此外,当在大角度反复弯曲时,封装在平坦袋中的柔性准固态细胞显示出稳定的电化学性能。通过使用剪刀部分切割后,该电池显示出持续的电力能力。能量存储机制详细讨论。

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