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首页> 外文期刊>Nanoscale >Direct growth of 2D nickel hydroxide nanosheets intercalated with polyoxovanadate anions as a binder-free supercapacitor electrode
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Direct growth of 2D nickel hydroxide nanosheets intercalated with polyoxovanadate anions as a binder-free supercapacitor electrode

机译:的直接增长2 d氢氧化镍nanosheets间与polyoxovanadate阴离子binder-free超级电容器电极

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摘要

A mesoporous nanoplate network of two-dimensional (2D) layered nickel hydroxide Ni(OH)(2) intercalated with polyoxovanadate anions (Ni(OH)(2) POV) was built using a chemical solution deposition method. This approach will provide high flexibility for controlling the chemical composition and the pore structure of the resulting Ni(OH)(2)-POV nanohybrids. The layer-by-layer ordered growth of the Ni(OH)(2) POV is demonstrated by powder X-ray diffraction and cross-sectional high-resolution transmission electron microscopy. The random growth of the intercalated Ni(OH)(2) -POV nanohybrids leads to the formation of an interconnected network morphology with a highly porous stacking structure whose porosity is controlled by changing the ratio of Ni(OH)(2) and POV. The lateral size and thickness of the Ni(OH)(2)-POV nanoplates are similar to 400 nm and from similar to 5 nm to 7 nm, respectively. The obtained thin films are highly active electrochemical capacitor electrodes with a maximum specific capacity of 1440 F g(-1) at a current density of 1 A g(-1), and they withstand up to 2000 cycles with a capacity retention of 85. The superior electrochemical performance of the Ni(OH)(2)-POV nanohybrids is attributed to the expanded mesoporous surface area and the intercalation of the POV anions. The experimental findings highlight the outstanding electrochemical functionality of the 2D Ni(OH)(2)-POV nanoplate network that will provide a facile route for the synthesis of low-dimensional hybrid nanomaterials for a highly active supercapacitor electrode.
机译:二维的介孔nanoplate网络(2 d)分层氢氧化镍倪(OH) (2)间与polyoxovanadate阴离子(倪(哦)(2)观点)是用化学物质溶液沉积法。为控制提供高灵活性化学成分和孔隙结构结果镍(OH)(2)观点nanohybrids。逐层下令Ni的增长(OH) (2)观点是通过粉末x射线衍射和横向分辨率的传输电子显微镜。夹层的倪(OH)(2)观点nanohybrids导致形成一个相互联系的网络形态高度多孔的叠加控制结构的孔隙度改变的比率倪(OH)(2)和观点。横向尺寸和厚度的镍(OH)(2)观点nanoplates类似于400海里,从相似分别5到7 nm。电影是高度活跃的电化学电容器电极与最大的特定能力1440 F (g(1)电流密度为1 g (1),他们承受2000周期保留85%的能力。电化学性能的镍(OH)(2)观点nanohybrids归因于扩大介孔表面积的夹层破阴离子。突出优异的电化学2 d倪(OH)的功能(2)观点nanoplate网络将提供一个简单的路线合成低维混合纳米材料对于一个高度活跃的超级电容器电极。

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