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Nanostructure selenium compounds as pseudocapacitive electrodes for high-performance asymmetric supercapacitor

机译:纳米结构硒化合物作为高性能不对称超级电容器的伪电容电极

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摘要

The electrochemical performance of an energy conversion and storage device like the supercapacitor mainly depends on the microstructure and morphology of the electrodes. In this paper, to improve the capacitance performance of the supercapacitor, the all-pseudocapacitive electrodes of lamella-like Bi18SeO29/BiSe as the negative electrode and flower-like Co0.85Se nanosheets as the positive electrode are synthesized by using a facile low-temperature one-step hydrothermal method. The microstructures and morphology of the electrode materials are carefully characterized, and the capacitance performances are also tested. The Bi18SeO29/BiSe and Co0.85Se have high specific capacitance (471.3 F g–1 and 255 F g–1 at 0.5 A g–1), high conductivity, outstanding cycling stability, as well as good rate capability. The assembled asymmetric supercapacitor completely based on the pseudocapacitive electrodes exhibits outstanding cycling stability (about 93% capacitance retention after 5000 cycles). Moreover, the devices exhibit high energy density of 24.2 Wh kg–1 at a power density of 871.2 W kg–1 in the voltage window of 0–1.6 V with 2 M KOH solution.
机译:像超级电容器这样的能量转换和存储设备的电化学性能主要取决于电极的微观结构和形态。为了改善超级电容器的电容性能,利用方便的低温合成了片状Bi18​​SeO29 / BiSe作为负电极,花状Co0.85Se纳米片作为正电极的全伪电容电极。一站式水热法。仔细表征了电极材料的微观结构和形态,并测试了电容性能。 Bi18SeO29 / BiSe和Co0.85Se具有较高的比电容(471.3 F g -1 和255 F g -1 在0.5 A g -1 >),高电导率,出色的循环稳定性以及良好的倍率能力。完全基于伪电容电极组装的非对称超级电容器具有出色的循环稳定性(5000次循环后约93%的电容保持率)。此外,这些器件在0–1.6 V的电压窗口(2 M)下以871.2 ofW kg -1 的功率密度表现出24.2 Wh kg –1 的高能量密度KOH溶液。

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