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Low-temperature liquid-phase synthesis and electrochemical activity of a-nickel hydroxide with flower-like micro-/nano-structure

机译:具有花状微/纳米结构的氢氧化镍的低温液相合成和电化学活性

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The synthesis of α-nickel hydroxide has been achieved via a facile liquid-phase precipitation approach, using the mixed solvents of ethylene glycol and water as reaction medium at low temperature. The XRD characterization indicates that pure phase α-Ni(OH)2 can be obtained under variable temperature and pH value. The products present a flower-like micro-/nano-structure assembled with curved nanosheets. The nanosheets have the width of 100~500 nm and the thickness of 20~70 nm. The cavities are formed in the structure due to the interconnection of curved nanosheets. The solvents play a key role in the formation of Ni(OH)2 with different forms. Pure phase α-Ni(OH)2 can only be synthesized in the mixed solvents of ethylene glycol and water. Cyclic voltammetry was applied to test the electrochemical activity of the as-synthesized α-Ni(OH)2. The findings suggest that the α-Ni(OH)2 with a micro-/nano-structure exhibits excellent electrochemical activity, which may be considered as a promising candidate of electrode material.
机译:已经通过容易液相沉淀方法实现了α-镍氢氧化物的合成,在低温下使用乙二醇和水作为反应介质的混合溶剂来实现。 XRD表征表明纯相α-Ni(OH)2可以在可变温度和pH值下获得。该产品呈现了一种用弯曲的纳米晶片组装的花样的微/纳米结构。纳米片的宽度为100〜500nm,厚度为20〜70nm。由于弯曲的纳米片的互连,在结构中形成腔。溶剂在不同形式的Ni(OH)2的形成中起关键作用。纯相α-Ni(OH)2只能在乙二醇和水的混合溶剂中合成。施用循环伏安法以测试AS合成α-Ni(OH)2的电化学活性。结果表明,具有微/纳米结构的α-Ni(OH)2表现出优异的电化学活性,其可以被认为是电极材料的有希望的候选者。

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