首页> 外文期刊>Journal of Colloid and Interface Science >Benzoate anions-intercalated cobalt-nickel layered hydroxide nanobelts as high-performance electrode materials for aqueous hybrid supercapacitors
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Benzoate anions-intercalated cobalt-nickel layered hydroxide nanobelts as high-performance electrode materials for aqueous hybrid supercapacitors

机译:苯甲酸阴离子嵌入钴 - 镍层状氢氧化物纳米座作为用于含水杂交超级电容器的高性能电极材料

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Layered metal hydroxide salts (LHSs) have recently gained extensive interests as an efficient electrode material for supercapacitors (SCs). Herein, we report, for the first time ever, the synthesis of a cobalt-nickel layered hybrid organic-inorganic LHS that was intercalated with benzoate anions (B-CoNi-LHSs) and observe a high performance as electrode materials for hybrid supercapacitors (HSCs). B-CoNi-LHSs were synthesized by using a co-precipitation method, where sodium benzoate was added dropwise to cobalt and nickel salt solution, without the addition of any organic solvent or surfactant. Due to the intercalation of anions and synergistic interactions of the multi-metallic components, the B-CoNi-LHSs electrode showed a high specific capacity of 570 C g(-1) (specific capacitance of 1267 F.g(-1)) at 1 A g(-1), excellent rate performance (65% from 1 to 10 A g(-1)) and outstanding cycling performance (81.09% over 8000 cycles), in comparison to the mono-metallic counterparts. An HSC device, assembled by using B-CoNi-LHSs as the positive electrode and activated carbon (AC) as the negative one, exhibited a power density of 780 W kg(-1) at the energy density of 31.7 Wh kg(-1), and 8543 W kg(-1) at 18.1 Wh kg(-1). Results from this study show that the organic-inorganic hybrids of layered dual-metal hydroxides intercalated with benzoate anions may be a viable candidate as electrode materials for high-performance SCs. (C) 2020 Elsevier Inc. All rights reserved.
机译:层状金属氢氧化物盐(LHS)作为超级电容器(SCs)的高效电极材料,近年来得到了广泛的关注。在此,我们首次报道了钴-镍层状杂化有机-无机LHS的合成,该杂化有机-无机LHS嵌入苯甲酸根阴离子(B-CoNi-LHS),并观察到其作为杂化超级电容器(HSC)电极材料的高性能。采用共沉淀法合成了B-CoNi-LHSs,在不添加任何有机溶剂或表面活性剂的情况下,将苯甲酸钠逐滴添加到钴和镍盐溶液中。由于阴离子的插层作用和多金属组分的协同作用,与单金属对应物相比,B-CoNi-LHSs电极在1Ag(-1)下显示出570 cG(-1)的高比容量(1267 F.g(-1)),优异的速率性能(从1到10Ag(-1))和优异的循环性能(8000次循环中81.09%)。采用B-CoNi-LHSs作为正极,活性炭(AC)作为负极组装的HSC装置在能量密度为31.7 Wh-kg(-1)时的功率密度为780 W-kg(-1),在能量密度为18.1 Wh-kg(-1)时的功率密度为8543 W-kg(-1)。本研究的结果表明,层状双金属氢氧化物与苯甲酸盐阴离子的有机-无机杂化物可能是高性能SCs电极材料的可行候选材料。(C) 2020爱思唯尔公司版权所有。

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