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超薄氧化锰纳米片均匀包覆在碳纳米线圈上,可用作高性能不对称超级电容器电极。

Ultrathin manganese oxide nanosheets uniformly coating on carbon nanocoils as high-performance asymmetric supercapacitor electrodes.

机构信息

Key Laboratory of Advanced Materials of Tropical Island Resources (Hainan University), Ministry of Education, Haikou 570228, China.

Key Laboratory of Advanced Materials of Tropical Island Resources (Hainan University), Ministry of Education, Haikou 570228, China.

出版信息

J Colloid Interface Sci. 2019 Mar 1;537:142-150. doi: 10.1016/j.jcis.2018.11.006. Epub 2018 Nov 5.

Abstract

Two key limitations affecting supercapacitor application of manganese oxide (MO) are the poor electric conductivity and low accessible surface area. In this work, we reported an effective method to fabricate lamellar MO coating on carbon nanocoil (CNC) and investigated its supercapacitive properties. The elegant MO/CNC core shell structure enabled synergistic effects from both MO nanosheets and CNC by using nanosheets to provide a large interaction area for ion transport and CNC to improve the electric conductivity of composites. The investigation of electrochemistry showed that the specific capacitance of MO could reach 435 F g at current density of 1 A g. Moreover, the composites presented an excellent rate capability and cycling performance with 92.7% capacitance retention at current density of 2 A g after 5000 cycles. In addition, the asymmetric supercapacitor fabricated with MO/CNC as the positive electrode and CNC as the negative electrode demonstrated excellent energy density of 21.58 Wh kg at a power density of 100 W kg. And the asymmetric supercapacitor exhibited an excellent electrochemical cycling stability with 96.3% initial capacitance remained after 1000 cycles.

摘要

两个影响氧化锰(MO)超级电容器应用的主要限制因素是较差的电导率和低的可及表面积。在这项工作中,我们报道了一种在碳纳米线圈(CNC)上制备层状 MO 涂层的有效方法,并研究了其超级电容性能。MO/CNC 核壳结构的优雅设计使 MO 纳米片和 CNC 之间能够产生协同效应,纳米片为离子传输提供了较大的相互作用面积,而 CNC 则提高了复合材料的电导率。电化学研究表明,在 1 A g 的电流密度下,MO 的比电容可达 435 F g。此外,该复合材料具有优异的倍率性能和循环性能,在 5000 次循环后,在 2 A g 的电流密度下,电容保持率为 92.7%。此外,以 MO/CNC 为正极、CNC 为负极组装的非对称超级电容器在 100 W kg 的功率密度下表现出 21.58 Wh kg 的优异能量密度。并且该非对称超级电容器在 1000 次循环后仍具有 96.3%的初始电容保持率,表现出优异的电化学循环稳定性。

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