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Synthesis, characterization, and electrochemical properties of Ni(OH)(2)/ultra-stable Y zeolite composite

机译:Ni(OH)(2)/超稳定Y型沸石复合材料的合成,表征及电化学性能

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摘要

A novel composite of Ni(OH)(2)/ultra-stable Y zeolite materials was synthesized by an improved chemical precipitation method, which used the ultra-stable Y zeolite as the template. The Ni(OH)(2)/ultra-stable Y zeolite composite and its microstructure were characterized by X-ray diffraction measurements and transmission electron microscopy. Electrochemical studies were carried out using cyclic voltammetry, chronopotentiometry technology and ac impedance spectroscopy, respectively. The result shows that the loose-packed whisker Ni(OH)(2) phase has profound impacts on electrode performance at very high power output. A maximum discharge capacity of 185.6 mA-h/g (1670 F/g), or 371 mA-h/g (3340 F/g) after correcting for weight percent of nickel hydroxide phase at the current density of 625 mA/g could be achieved in a half-cell setup configuration for the Ni(OH)(2)/ultra-stable Y zeolite electrode, suggesting its potential application in electrode material for secondary batteries and electrochemical capacitors. Furthermore, the effect of NH4Cl concentration on the electrochemical properties characteristics has also been systemically explored.
机译:采用改进的化学沉淀法,以超稳定Y型沸石为模板,合成了新型Ni(OH)(2)/超稳定Y型沸石材料。通过X射线衍射测量和透射电子显微镜对Ni(OH)(2)/超稳定Y沸石复合材料及其微观结构进行了表征。电化学研究分别使用循环伏安法,计时电位技术和交流阻抗谱进行。结果表明,在非常高的功率输出下,松散填充的晶须Ni(OH)(2)相对电极性能具有深远的影响。在以625 mA / g的电流密度校正氢氧化镍相的重量百分比后,最大放电容量为185.6 mA-h / g(1670 F / g)或371 mA-h / g(3340 F / g)在Ni(OH)(2)/超稳定Y沸石电极的半电池设置配置中可以实现这一点,表明其在二次电池和电化学电容器的电极材料中的潜在应用。此外,还系统地研究了NH 4 Cl浓度对电化学性能特征的影响。

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