首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >3D hierarchically porous zinc-nickel-cobalt oxide nanosheets grown on Ni foam as binder-free electrodes for electrochemical energy storage
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3D hierarchically porous zinc-nickel-cobalt oxide nanosheets grown on Ni foam as binder-free electrodes for electrochemical energy storage

机译:在Ni泡沫上生长的3D分层多孔锌-镍-钴氧化物纳米片作为无粘合剂电极用于电化学储能

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Three-dimensional (3D) hierarchically porous transition metal oxides, particularly those involving different metal ions of mixed valence states and constructed from interconnected nano-building blocks directly grown on conductive current collectors, are promising electrode candidates for energy storage devices such as Li-ion batteries (LIBs) and supercapacitors (SCs). This study reports a facile and scalable chemical bath deposition process combined with simple calcination for fabricating 3D hierarchically porous Zn-Ni-Co oxide (ZNCO) nanosheet arrays directly grown on Ni foam with robust adhesion. The resulting nanostructures are then evaluated as a binder-free electrode for LIBs and SCs. Given its unique architecture and compositional advantages, the electrode exhibits a reversible capacity of 1131 mA h g(-1) after 50 cycles at a current density of 0.2 A g(-1), an excellent long-term cycling stability at a high current density of 1 A g(-1) for 1000 cycles, and a desirable rate capability when tested as an anode for LIBs. When used for SCs, the electrode demonstrates a high specific capacitance (1728 F g(-1) at 1 A g(-1)), an outstanding rate capability (72% capacitance retention from 1 A g(-1) to 50 A g(-1)), and an excellent cycling stability (capacitance of 1655 F g(-1) after 5000 cycles at a current density of 20 A g(-1) with 108.6% retention). Overall, the unique 3D hierarchically porous ZNCO nanosheets hold a great promise for constructing high-performance energy storage devices.
机译:三维(3D)分层多孔过渡金属氧化物,特别是涉及包含混合化合价态的不同金属离子并由直接在导电集电器上生长的互连纳米结构块构成的氧化物,是用于储能装置(如锂离子)的有希望的电极候选物电池(LIB)和超级电容器(SC)。这项研究报告了一种简便,可扩展的化学浴沉积工艺,结合简单的煅烧工艺,即可制造3D分层多孔Zn-Ni-Co氧化物(ZNCO)纳米片阵列,该阵列直接生长在具有坚固附着力的Ni泡沫上。然后将所得纳米结构评估为LIB和SC的无粘结剂电极。凭借其独特的结构和成分优势,该电极在0.2 A g(-1)的电流密度下经过50次循环后展现出1131 mA hg(-1)的可逆容量,在高电流密度下具有出色的长期循环稳定性1个g(-1)可承受1000次循环,并且作为LIB的阳极进行测试时具有理想的速率能力。当用于SC时,该电极表现出高的比电容(在1 A g(-1)时为1728 F g(-1)),出色的倍率能力(从1 A g(-1)到50 A的72%电容保持率) g(-1))和出色的循环稳定性(5000个循环后,在20 A g(-1)的电流密度下,电容为1655 F g(-1),保留108.6%)。总体而言,独特的3D分层多孔ZNCO纳米片对构建高性能储能设备具有广阔的前景。

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