MOF assistance synthesis of nanoporous double-shelled CuCo2O4 hollow spheres for hybrid supercapacitors

被引:85
|
作者
Saleki, Fereshteh [1 ]
Mohammadi, Abdolkhaled [1 ]
Moosavifard, Seyyed Ebrahim [2 ,3 ]
Hafizi, Ali [1 ]
Rahimpour, Mohammad Reza [1 ]
机构
[1] Shiraz Univ, Dept Chem Engn, Shiraz 7134851154, Iran
[2] Jahrom Univ Med Sci, Sch Med, Dept Adv Med Sci & Technol, Jahrom 7414846199, Iran
[3] Jahrom Univ Med Sci, Sch Med, Res Ctr Noncommunicable Dis, Jahrom 7414846199, Iran
关键词
Hybrid supercapacitor; Metal organic framework; MOF; ZIF-67; Metal oxide; Nanoporous; Hollow spheres; CuCo2O4; ELECTRODE MATERIAL; NANOWIRE ARRAYS; GRAPHENE OXIDE; DOPED CARBON; NI FOAM; PERFORMANCE; NANOCOMPOSITES; MICROSPHERES; POLYANILINE; NANOTUBES;
D O I
10.1016/j.jcis.2019.08.044
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Design of complex hollow nanostructures of two or more transition metal oxides seems to be necessary to answer the demand for novel energy storage electrodes owning outstanding performance for advanced developments of modern electronics. Herein, we develop a metal-organic frameworks (MOFs) assistance self-templated method for the synthesis of double-shell CuCo2O4 hollow spheres as battery-type electrode material with a large surface area of 93 m(2) g(-1). This electrode material reveals excellent electrochemical performance with an ultrahigh specific capacity of 701 C r, at 2 A g(-1). Additionally, remarkably high cycling performance is exhibited with maintaining more than 93.6% of the initial capacity after 6000 cycles. The assembly of the double-shell hollow spheres electrode with reduced graphene oxide (rGO) electrode in an asymmetric cell results in a high-performance supercapacitor with an energy density of 38.4 Wh kg(-1) and a power density of 16 kW kg(-1), that is remarkably higher than that of conventional supercapacitors and comparable with Ni-MH batteries. Additionally, we display that assembling two asymmetric devices in series could effectively power blue, green, and red LED indicators. The excellent electrochemical performance of the ZCCO electrode shows its high potential for the production of advanced energy storage devices. (C) 2019 Elsevier Inc. All rights reserved.
引用
收藏
页码:83 / 91
页数:9
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