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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Construction of MnSe2/CoSe2/reduced graphene oxide composites with enhanced electrochemical performance as the battery-like electrode for hybrid supercapacitors
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Construction of MnSe2/CoSe2/reduced graphene oxide composites with enhanced electrochemical performance as the battery-like electrode for hybrid supercapacitors

机译:MnSe2 / COSE2 /缩减石墨烯复合材料的构建,具有增强的电化学性能作为杂交超级电容器的电池状电极

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Currently, bimetallic transition metal selenides have allured great attention as battery-like electrode materials for hybrid supercapacitors on account of their lower band gap and preferable electrical conductivity. Herein, a series of MnSe2/CoSe2 (MCSe) with nanosheets structure were rationally synthesized on rGOcoated Ni foam (MCSe/rGO) by employing the simple two-pot hydrothermal strategy with manganese cobalt oxide as precursor followed by a selenization treatment with various selenization times. The timedependent experiments indicate that the selenization time plays an important role in forming the morphologies and the electrochemical behaviors of MCSe/rGO composites. Remarkably, the MCSe/rGO composite with the optimal selenization time (MCSe-3 h/rGO) exhibits an excellent specific capacity of 1138 C g(-1) at 1 A g(-1), predominant rate performance of 80% even at 50 A g(-1) along with exceptional cycling behavior of 98.5% through 5000 cycles. Additionally, by integrating the as-obtained MCSe-3 h/rGO as anode with activated carbon (AC) as cathode, a hybrid supercapacitor (HSC) was constructed and performed a desirable energy density of 45.8 W h kg(-1) at the power density of 853.1 W kg(-1) and 100% capacity retention over 7000 cycles. The remarkable electrochemical properties show that the MCSe-3 h/rGO composite as a battery-like electrode material holds substantial potential for energy storage applications. (C) 2021 Elsevier B.V. All rights reserved.
机译:目前,双金属过渡金属硒化物由于其较低的带隙和较好的导电性,作为混合超级电容器的类电池电极材料受到了广泛关注。本文以锰钴氧化物为前驱体,采用简单的双锅水热法,在rGOcoated泡沫镍(MCSe/rGO)上合理地合成了一系列具有纳米片结构的MnSe2/CoSe2(MCSe),然后进行不同硒化时间的硒化处理。时间相关实验表明,硒化时间对MCSe/rGO复合材料的形貌和电化学行为的形成起着重要作用。值得注意的是,具有最佳硒化时间(MCSe-3 h/rGO)的MCSe/rGO复合材料在1Ag(-1)下具有1138 cG(-1)的优异比容量,即使在50Ag(-1)下也具有80%的优异速率性能,以及98.5%到5000次循环的优异循环性能。此外,通过将获得的MCSe-3 h/rGO作为阳极,活性炭(AC)作为阴极,构建了一种混合超级电容器(HSC),并在853.1 W kg(-1)的功率密度下实现了45.8 W h kg(-1)的理想能量密度,在7000次循环中保持了100%的容量。其优异的电化学性能表明,MCSe-3h/rGO复合材料作为类似电池的电极材料具有巨大的储能应用潜力。(c)2021爱思唯尔B.V.保留所有权利。

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