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稀土Y摻雜非晶態(tài)納米Ni(OH)2的結構及其電化學性能研究
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國家自然科學基金資助項目(20563001);廣西科學研究與技術開發(fā)計劃項目(桂科能05112001-2A1)


Preparation and Performance of Y-Doped Amorphous Nano-Sized Ni(OH)2
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    摘要:

    以Tween-80/n-C4H9OH/c-C6H12/NiSO4水溶液體系,采用微乳液快速冷凍沉淀法制備出稀土Y摻雜非晶態(tài)納米級氫氧化鎳粉體材料。采用XRD、SAED、SEM、TEM、EDS、Raman、IR,粒度分析和比表面等測試方法對所制備的粉體進行了結構形態(tài)表征,并對其充放電性能和交流阻抗譜進行測試。結果發(fā)現(xiàn),適量稀土元素Y的摻入使非晶態(tài)納米氫氧化鎳的結構缺陷增多、無序性增強,平均粒度減小、比表面積增大,有利于降低其溶液電阻、電荷轉移電阻和Warburg阻抗,從而提高其放電比容量。樣品作為MH-Ni電池正極材料以0.2 C充放電,終止電壓為1.0 V,當摻雜Y的質量分數(shù)為4%時,放電比容量達到333.3 mAh/g

    Abstract:

    In this paper, rare earth Y-doped amorphous nano-sized nickel hydroxide powder was prepared through the method of micro emulsion deep freeze deposition with the system of Tween-80/n-C4H9OH/c-C6H12/NiSO4 solution. XRD, SAED, SEM, TEM, EDS, Raman, IR, and particle size distribution and specific surface area measurements were used to analyze the structure and morphology of the material samples. Their charge-discharge performance and electrochemical impedance spectroscopy were also studied. The results showed that the disorder intensity of amorphous nickel hydroxide is increased, the average particle size is decreased and the specific surface area is also increased by adding rare earth Y, to the benefit of decreasing solution resistance, charge transfer resistance and Warburg impedance for the sample electrodes due to the increase of discharge specific capacity. The discharge specific capacity is 333.3 mAh·g-1 when adding 4% Y (mass fraction) at a charge-discharge system of 0.2 C and a cut-off voltage of 1 V if used for the anode materials of MH-Ni battery

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劉長久,孫 丹,谷得龍,吳華斌.稀土Y摻雜非晶態(tài)納米Ni(OH)2的結構及其電化學性能研究[J].稀有金屬材料與工程,2009,38(9):1556~1561.[Liu Changjiu, Sun Dan, Gu Delong, Wu Huabin. Preparation and Performance of Y-Doped Amorphous Nano-Sized Ni(OH)2[J]. Rare Metal Materials and Engineering,2009,38(9):1556~1561.]
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  • 收稿日期:2008-10-19
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