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在碳布上生长的具有类壁状分层结构的金属氧化物纳米片阵列,可用作优异的超级电容器电极。

Wall-like hierarchical metal oxide nanosheet arrays grown on carbon cloth for excellent supercapacitor electrodes.

机构信息

SZU-NUS Collaborative Innovation Center for Optoelectronic Science and Technology, Shenzhen Key Laboratory of Two-Dimensional Materials and Devices and Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, Shenzhen University, Shenzhen, P. R. China.

出版信息

Nanoscale. 2016 Jul 21;8(27):13273-9. doi: 10.1039/c6nr04020a. Epub 2016 Jun 23.

Abstract

Recently, considerable efforts have been made to satisfy the future requirements of electrochemical energy storage using novel functional electrode materials. Binary transition metal oxides (BTMOs) possess multiple oxidation states that enable multiple redox reactions, showing higher supercapacitive properties than single component metal oxides. In this work, a facile hydrothermal method is provided for the synthesis of wall-like hierarchical metal oxide MMoO4 (M = Ni, Co) nanosheet arrays, which are directly grown on flexible carbon cloth for use as advanced binder-free electrodes for supercapacitors. By virtue of their intriguing structure, the resulted active material nanosheets with a high specific surface area can provide a large electroactive region, which could facilitate easy accession of electrolyte ions and fast charge transport, resulting in an enhanced electrochemical performance. Separately, the as-synthesized MMoO4 (M = Ni, Co) samples have exhibited superior specific capacitances (1483 F g(-1) of NiMoO4 and 452 F g(-1) of CoMoO4 at a current density of 2 A g(-1)), as well as excellent cycling stability (93.1% capacitance retention of NiMoO4 and 95.9% capacitance retention of CoMoO4 after 2000 cycles). The results show that the binder-free electrodes constructed by deposition of MMoO4 (M = Ni, Co) nanosheets on carbon cloth are promising candidates for the application of supercapacitors.

摘要

最近,人们做出了相当大的努力,使用新型功能电极材料来满足电化学储能的未来需求。二元过渡金属氧化物 (BTMOs) 具有多种氧化态,能够进行多种氧化还原反应,表现出比单一成分金属氧化物更高的超级电容性能。在这项工作中,提供了一种简便的水热法来合成壁状分层金属氧化物 MMoO4(M = Ni、Co)纳米片阵列,这些纳米片阵列直接生长在柔性碳纤维布上,用作超级电容器的先进无粘结剂电极。由于其引人入胜的结构,具有高比表面积的所得活性材料纳米片可以提供一个大的电活性区域,这有利于电解质离子的容易进入和快速电荷传输,从而提高电化学性能。此外,所合成的 MMoO4(M = Ni、Co)样品表现出优异的比电容(在 2 A g-1 的电流密度下,NiMoO4 的比电容为 1483 F g-1,CoMoO4 的比电容为 452 F g-1),以及出色的循环稳定性(NiMoO4 的电容保持率为 93.1%,CoMoO4 的电容保持率为 95.9%,在 2000 次循环后)。结果表明,由沉积在碳纤维布上的 MMoO4(M = Ni、Co)纳米片构建的无粘结剂电极是超级电容器应用的有前途的候选材料。

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