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蛋黄壳型 CuCoSe 微球的简便合成及其作为超级电容器应用的新型电极材料

Facile Synthesis of Yolk-Shelled CuCoSe Microspheres as a Novel Electrode Material for Supercapacitor Application.

机构信息

Department of Chemistry , Isfahan University of Technology , Isfahan 84156-83111 I.R. Iran.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 8;12(1):418-427. doi: 10.1021/acsami.9b12805. Epub 2019 Dec 17.

Abstract

Recently, metal selenides have attracted much attention in the energy storage applications. This attention is due to the outstanding properties of metal selenides (lower cost, lower electronegativity, and environmental friendliness) compared to metal sulfides and oxides. In this work, novel yolk-shelled CuCoSe (YS-CCS) microspheres are synthesized by a facile two-step hydrothermal method and used as an electrode material for high-performance supercapacitors (SCs) in alkaline media. The proposed YS-CCS electrode shows remarkable electrochemical performance, including fast kinetics, high reversibility, low internal resistance (0.45 Ω), excellent specific capacitance (512 F g at a current density of 1A g), high rate capability (70.8% after increasing the current density six times), and good cycling stability (about 83.7% of the initial retention after 6000 successive charge-discharge cycles). Furthermore, an asymmetric supercapacitor (ASC) is assembled by using the YS-CCS (as a cathode electrode material) and active carbon (as an anode electrode material). The assembled device delivers a maximum energy density of 9.45 W h kg and a power density up to 850 W kg in a wide potential window of 1.70 V. Meanwhile, the ASC device exhibits superb rate capability (∼84.67%) after increasing the current density five times and very good capacitance retention (∼88%) after 6000 cycles.

摘要

最近,金属硒化物在储能应用中引起了广泛关注。与金属硫化物和氧化物相比,金属硒化物(成本更低、电负性更低、环保)具有优异的性能,这是引起这种关注的原因。在这项工作中,通过简便的两步水热法合成了新颖的核壳结构的 CuCoSe(YS-CCS)微球,并将其用作碱性介质中高性能超级电容器(SCs)的电极材料。所提出的 YS-CCS 电极表现出显著的电化学性能,包括快速动力学、高可逆性、低内阻(0.45 Ω)、优异的比电容(在 1A g 的电流密度下为 512 F g)、高倍率性能(在电流密度增加六倍后,可保持 70.8%的电容)和良好的循环稳定性(在 6000 次连续充放电循环后,保留约 83.7%的初始容量)。此外,通过使用 YS-CCS(作为阴极电极材料)和活性炭(作为阳极电极材料)组装了一个非对称超级电容器(ASC)。该组装器件在 1.70 V 的宽电位窗口下,可提供 9.45 W h kg 的最大能量密度和高达 850 W kg 的功率密度。同时,在电流密度增加五倍后,ASC 器件表现出出色的倍率性能(约 84.67%),在 6000 次循环后,电容保持率约为 88%。

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