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首页> 外文期刊>Applied Surface Science >Facile one-pot synthesis of 2D vanadium-doped NiCl(OH) nanoplates assembled by 3D nanosheet arrays on Ni foam for supercapacitor application
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Facile one-pot synthesis of 2D vanadium-doped NiCl(OH) nanoplates assembled by 3D nanosheet arrays on Ni foam for supercapacitor application

机译:适用于3D纳米片阵列的2D钒掺杂NiCl(OH)纳米纳米型纳米孔的纳米玻璃纳米液体的纳米玻璃铝合金组合的一罐合成

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Herein, the 2D NiCl(OH) nanosheets and 2D V-doped NiCl(OH) nanoplates assembled by 3D nanosheet arrays supported on nickel foam have been successfully synthesized by a facile one-pot hydrothermal reaction. The dependences of the microstructure and electrochemical performance on hydrothermal reaction time and reactant concentration were investigated, and the electrochemical performance was optimized at 12 h and C-Ni(2+) = 0.15 mM. A series of characterization results reveal that the as-prepared V-doped NiCl(OH) nanoplate arrays are successfully grown on nickel foam, and these nanoplates are composed of interconnected ultrathin nanosheets. The thickness of the as-obtained nanosheets increases with increasing reaction time, and the thickness of the optimized nanosheets is about similar to 20 nm. Vanadium dopant is used as the template agent to alter the morphology of NiCl(OH) nanosheet arrays and form the V-doped NiCl(OH) nanoplate arrays, then leading to a higher specific surface area and lower charge transfer resistance. The cost-effective, binder-free and optimized V-doped NiCl(OH) delivers the high specific capacitances of 2753.3 and 1470.0 F g(-1) at the current densities of 1 and 30 mA cm(-2), respectively. Meanwhile, an asymmetric supercapacitor is constructed with the optimized Vdoped NiCl(OH) sample as the positive electrode and activated carbon as the negative electrode. The fabricated device can exhibit a high energy densities of 45.5 W h kg(-1) at the power density of 799.5 W kg(-1) in the voltage window of 0-1.6 V. The efficient electrochemical performance of 3D V-doped NiCl(OH) nanoplate arrays makes it a favorable candidate for supercapacitor electrode material.
机译:在此,由支撑在镍泡沫上的3D纳米晶片阵列组装的2D NiCl(OH)纳米晶片和2D V掺杂的NiCl(OH)纳米板已通过容易的单罐水热反应成功地合成。研究了微观结构和电化学性能对水热反应时间和反应物浓度的依赖性,电化学性能在12小时和C-Ni(2+)= 0.15mm处进行了优化。一系列表征结果表明,制备的V掺杂的NiCl(OH)纳米层板阵列在镍泡沫上成功生长,并且这些纳米板由相互连接的超薄纳米片组成。随着反应时间的增加,所获得的纳米片的厚度增加,优化的纳米片的厚度约为20nm。钒掺杂剂用作模板剂以改变NiCl(OH)纳米片阵列的形态并形成V掺杂的NiCl(OH)纳米层板阵列,然后导致更高的比表面积和更低的电荷转移电阻。经济效益,无粘合剂和优化的V掺杂NiCl(OH)分别以1和30mA cm(-2)的电流密度分别为2753.3和1470.0fg(-1)的高比电容。同时,不对称超级电容器用优化的Vdoped NiCl(OH)样品作为正极和作为负极的活性炭构成。在0-1.6V的电压窗口中,制造的装置可以在799.5Wkg(-1)的功率密度,在0-1.6V的电压窗口中表现出45.5WH kg(-1)的高能量密度。3D V掺杂NiCl的有效电化学性能(OH)纳米板阵列使其成为超级电容器电极材料的有利候选者。

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