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花生状Zn_(0.33)Mn_(0.67)CO_3前驱物微米颗粒的制备及电催化研究

Preparation of Peanut-Shaped Zn_(0.33)Mn_(0.67)CO_3 Precursor Microparticles and their Excellent Ectrocatalytic Oxygen Evolution Reaction
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摘要 采用溶剂热法制备由片状结构组装成的花生状Zn_(0.33)Mn_(0.67)CO_3前驱物微米颗粒.去离子水∶三乙醇胺=15mL∶15mL时,合成的Zn_(0.33)Mn_(0.67)CO_3前驱物形貌清晰,晶粒尺寸大小均匀.电催化测试结果表明,Zn_(0.33)Mn_(0.67)CO_3前驱物的催化活性远超过纯泡沫镍,稳定性较好,具有较为优异的电催化性能. The peanut-shaped Zn0.33 Mn0.67CO3 precursor microparticles assembled by lamellar structure were successfully synthesized by solvothermal method.The synthesizedZn0.33 Mn0.67CO3 precursor has clear morphology and uniform grain size under SEM observation when the volum ratio of deionized water to triethanolamine is 15mL/15mL.The results of electrocatalytic test showed that the catalytic activity of the Zn0.33 Mn0.67CO3 precursor was much better than that of pure nickel foam.And it exhibits good stability and excellent electrocatalytic performance.
作者 徐倩倩 张永兴 李丽 方金辉 霍旺 陈松 XU Qian-qian;ZHANG Yong-xing;LI Li;FANG Jin-hui;HUO Wang;CHEN Song(School of Physics and Electronic Information,Huaibei Normal University,Huaibei 235000,China)
出处 《牡丹江师范学院学报(自然科学版)》 2019年第2期17-20,共4页 Journal of Mudanjiang Normal University:Natural Sciences Edition
基金 安徽省自然科学基金面上项目(1708085ME96) 淮北师范大学研究生教育教学研究项目(2017jyxm09)
关键词 Zn0.33Mn0.67CO3前驱物 花生状 溶剂热法 电催化性能 Zn0.33 Mn0.67CO3 precursors peanut-shaped solvothermal method,electrocatalytic performance
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