α-MnO_2 nanoneedle-based hollow microspheres coated with Pd nanoparticles as a novel catalyst for rechargeable lithium-air batteries  被引量:3

新型可充锂-空气电池的纳米刺状α-MnO_2/Pd空心微球催化剂(英文)

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作  者:张明[1,2] 徐强[1] 桑林[2] 丁飞[2] 刘兴江[1,2] 焦丽芳[3] 

机构地区:[1]天津大学化工学院,天津300072 [2]天津电源研究所化学与物理电源重点实验室,天津300384 [3]南开大学先进能源材料化学教育部重点实验室,天津300071

出  处:《Transactions of Nonferrous Metals Society of China》2014年第1期164-170,共7页中国有色金属学报(英文版)

基  金:Project(20973124)supported by the National Natural Science Foundation of China;Project(KLAEMC-OP201101)supported by the Open Project of Key Laboratory of Advanced Energy Materials Chemistry of Ministry of Education(Nankai University),China

摘  要:The hollow α-MnO2 nanoneedle-based microspheres coated with Pd nanoparticles were reported as a novel catalyst for rechargeable lithium-air batteries. The hollow microspheres are composed ofα-MnO2 nanoneedles. Pd nanoparticles are deposited on the hollow microspheres through an aqueous-solution reduction of PdCl2 with NaBH4 at room temperature. The results of TEM, XRD, and EDS show that the Pd nanoparticles are coated on the surface ofα-MnO2 nanoneedles uniformly and the mass fraction of Pd in the Pd-coated α-MnO2 catalyst is about 8.88%. Compared with the counterpart of the hollow α-MnO2 catalyst, the hollow Pd-coated α-MnO2 catalyst improves the energy conversion efficiency and the charge-discharge cycling performance of the air electrode. The initial specific discharge capacity of an air electrode composed of Super P carbon and the as-prepared Pd-coatedα-MnO2 catalyst is 1220 mA·h/g (based on the total electrode mass) at a current density of 0.1 mA/cm2, and the capacity retention rate is about 47.3% after 13 charge-discharge cycles. The results of charge-discharge cycling tests demonstrate that this novel Pd-coatedα-MnO2 catalyst with a hierarchical core-shell structure is a promising catalyst for the lithium-air battery.利用NaBH4溶液还原PdCl2的方法在具有纳米刺状表面的α-MnO2中空微球上沉积Pd,制备一种α-MnO2/Pd核壳型复合催化剂作为新一代可充锂-空气电池的催化剂。TEM、XRD和EDS等方法的分析结果表明,在催化剂中纳米Pd颗粒均匀地分布在刺状α-MnO2中空微球表面,Pd在催化剂中的质量分数约为8.88%。充放电测试结果表明,与纳米刺状的α-MnO2中空微球催化剂相比,α-MnO2/Pd复合催化剂提高了空气电极的能量转化效率和充放电循环性能。由Super P碳材料和所制备的α-MnO2/Pd复合催化剂所构成的空气电极在0.1mA/cm2电流密度下的首次放电比容量可以达1220 mA·h/g,经13次充放电循环后的容量保持率为47.3%。该纳米刺状α-MnO2/Pd核壳型复合催化剂是一种有前途的空气电池催化剂。

关 键 词:lithium-air battery composite catalyst nanoneedle-based hollow microsphere core-shell structure 

分 类 号:TM912[电气工程—电力电子与电力传动]

 

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