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首页> 外文期刊>Applied Surface Science >Rapid and simplistic microwave assisted method to synthesise cobalt selenide nanosheets; a prospective material for high performance hybrid supercapacitor
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Rapid and simplistic microwave assisted method to synthesise cobalt selenide nanosheets; a prospective material for high performance hybrid supercapacitor

机译:快速简便的微波辅助方法合成硒化钴纳米片;高性能混合超级电容器的潜在材料

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摘要

Metal selenides, particularly transition metal selenides, are the superb potential electrode materials for electrochemical energy storage applications. Herein, the cobalt selenide (Co0.85Se) nanosheets are successfully synthesized by a rapid, simplistic, and economical technique via the microwave-assisted method. It is found that Co0.85Se achieves the large specific surface area (104 m(2) g(-1)), and delivers a higher specific capacitance (1580 F g(-1) at 1 A g(-1) and 500 F g(-1) at 20 A g(-1)) as a positive electrode for hybrid supercapacitor. Further, a full-cell hybrid supercapacitor is assembled by using Co0.85Se as an anode and activated carbon as the cathode, which shows excellent energy density 51.2 W h kg(-1) at power density 800 W kg(-1), and maintains 28.4 W h kg(-1) when power density increases to 12,800 W kg(-1). Moreover, the full-cell device shows remarkable stability of 10,000 cycles, having a wider operating potential window ranging from 0 to 1.6 V. Such excellent performance of Co0.85Se exhibits that it is a favorable material for the energy storage applications.
机译:金属硒化物,特别是过渡金属硒化物,是用于电化学能量存储应用的极好的电势电极材料。此处,硒化钴(Co0.85Se)纳米片是通过微波辅助方法通过快速,简单且经济的技术成功合成的。发现Co0.85Se可实现较大的比表面积(104 m(2)g(-1)),并提供更高的比电容(在1 A g(-1)和500 A时为1580 F g(-1) F g(-1)在20 A g(-1))作为混合超级电容器的正极。此外,通过使用Co0.85Se作为阳极并使用活性炭作为阴极组装全电池混合超级电容器,它在功率密度为800 W kg(-1)时显示出出色的能量密度51.2 W h kg(-1),并且当功率密度增加到12,800 W kg(-1)时,可保持28.4 W h kg(-1)。此外,全电池器件显示出10,000次循环的出色稳定性,具有从0到1.6 V的更宽的工作电势窗口。Co0.85Se的这种出色性能表明,它是用于储能应用的理想材料。

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