One-pot synthesis of copper oxide-cobalt oxide core-shell nanocactus-like heterostructures as binder-free electrode materials for high-rate hybrid supercapacitors

被引:53
作者
Gopi, Chandu V. V. Muralee [1 ]
Vinodh, Rajangam [1 ]
Sambasivam, Sangaraju [2 ]
Obaidat, Ihab M. [2 ]
Kalla, Reddi Mohan Naidu [3 ]
Kim, Hee-Je [1 ]
机构
[1] Pusan Natl Univ, Sch Elect & Comp Engn, Busan 46241, South Korea
[2] United Arab Emirates Univ, Dept Phys, Al Ain, U Arab Emirates
[3] Sri Venkateswara Engn Coll, Dept Sci & Humanities, Krakambadi Rd, Tirupati 517507, Andhra Pradesh, India
关键词
Nanocactus-like; CuO-CoO; Core-shell; Hybrid supercapacitor; Energy density; HIGH-PERFORMANCE SUPERCAPACITOR; FACILE SYNTHESIS; NANOWIRE ARRAYS; ELECTROCHEMICAL PERFORMANCE; ASYMMETRIC SUPERCAPACITOR; ENERGY-STORAGE; CARBON CLOTH; NI FOAM; NICO2O4; NANOSHEETS;
D O I
10.1016/j.mtener.2019.100358
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
Hierarchical mesoporous nanocactus-like copper oxideecobalt oxide (CuO-CoO) core-shell architectures are directly grown on nickel foam by a facile, scalable, and cost-effective one-pot hydrothermal technique followed by thermal annealing and directly served as efficient electrode materials for hybrid supercapacitors (HSCs). The CoO nanoneedles are uniformly decorated on the surface of CuO nanoflakes to generate core-shell-like heterostructures. The CuO nanoflakes offer the abundant electroactive sites and enables fast redox reactions, while the CoO nanoneedles facilitates electrolyte diffusion and charge transportation, resulting superior rate capability and cycling life. Accordingly, the hierarchical core-shell CuO-CoO electrode achieves a specific capacity of 173.9 mA h g(-1) at 1 A g(-1) and long-cycle life with 94% retention over 5000 cycles at 4 A g(-1). Moreover, the fabricated HSC exhibits a stable operating voltage window of 1.6 V, excellent energy density of 56.5 W h kg(-1), respectively. Also, the HSC delivers a superior cycling stability of 98.8% retention with coulombic efficiency of 98.7% over 4000 cycles, implying the great potential for practical applications. (C) 2019 Elsevier Ltd. All rights reserved.
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页数:9
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