期刊文献+

(La_(0.8)Nd_(0.2))_2Mg(Ni_(0.8-x)Co_(0.1)Mn_(0.1)Al_x)_9(x=0,0.05,0.1,0.15)合金储氢性能与电化学性能研究 被引量:2

Research on Hydrogen Storage Properties and Electrochemical Performance of (La_(0.8)Nd_(0.2))_2Mg(Ni_(0.8-x)Co_(0.1)Mn_(0.1)Al_x)_9 (x=0,0.05,0.1,0.15) Alloys
原文传递
导出
摘要 采用磁悬浮熔炼方法制备(La0.8Nd0.2)2Mg(Ni0.8-xCo0.1Mn0.1Alx)9(x=0,0.05,0.1,0.15)系列合金,系统研究了Al替代Ni对合金相结构、储氢性能及电化学性能的影响。XRD分析表明,铸态合金分别由LaNi5相及LaNi3相组成;P-C-T测试显示随着Al替代量的增加,在相同温度下,合金的最大吸氢量先增加后减少;电化学测试表明,随着x增加,合金电极的最大放电容量逐渐降低,最大放电容量由x=0时的347mA.h/g逐渐下降到x=0.15时的263mA.h/g。 (La0.8Nd0.2)2Mg(Ni0.8.xCo0.1Mn0.1Alx)9(x=0,0.05,0.1,0.15)hydrogen storage alloys were prepared by used cold crucible maglev melting method. The alloy phase structure, hydrogen storage property and electrochemical performance in replace elements A1 with elements Ni was studied. X-ray diffraction(XRD) results show that the al- loy is mainly composition of LaNi5 phase and LaNi3 phase. The P-C-T testing show that the alloy hydrogen uptake of maximum first increase and reducing after increased in same temperature amount of Al replacement. The electro- chemical tests show that the alloy maximum electrode discharge capacity reduced gradually with the increasing x. Maximum discharge capacity for 347 mA ~ h/g(x=0) gradually decreases to 263 mA · h/g(x=0. 15).
作者 黄显吞
出处 《金属功能材料》 CAS 2013年第4期6-10,共5页 Metallic Functional Materials
基金 广西自然科学基金资助研究项目(2011GXNSFA018034) 广西高校特色专业及课程一体化建设项目(GXTSZY024)
关键词 AB3型 储氢性能 循环稳定性 电化学性能 AB3 type hydrogen storage performance cycle stability electrochemical performance
  • 相关文献

参考文献10

  • 1Li R,Wu J M,Wang X L. Effect of ABs-Type Hydrogen Storage Alloyprepared by Different Techniques on the Properties of MH/Ni Batteries[J]. J. Alloys Comp,2000,311(1) :40-45.
  • 2Sakai T, Miyamura H,Kuriyama N, et al. Metal Hydride Anodes Forniekel-Hydrogen Secondary Battery[J]. J. Eleetroehem Soe, 1990,137:795.
  • 3Jain A, Jain RK, Agarwa[ S. Thermodynamics and Structural Aspects of Hydrogen Absorption in Zrl-xXrxFe2alloys[J]. Hy- drogen Energy 2007 ,32 : 2445-2449.
  • 4Kandavel M, Bhat VV, Rougier A, et al. Improvement of Hy- drogen Storage Properties of the ABz Laves Phase Alloys for Automotive Application[J]. Hydrogen Energy 2008; 33: 3754- 3761.
  • 5Song MY, Yim CD, Bae JS, et al. Preparation by Gravity Cast- ing and Hydrogen-Storage Properties of Mg-23. 5 wt. Ni-(5, 10 and 15 wt.La[J]. Alloys Compd 2008;463:143-147.
  • 6Chen Y, Sequeira CAC, Allen T. Eleetroeatalytie Abilities of Hydrogen Storage Alloy as Anode Eleetroeatalyst of Alkaline Fuel Cell[J]. Alloys Compd 2005 ;404 - 406:661-664.
  • 7GUOJin, WEI Wen-lou, MAShu-yuan. An Investigation of Cor- relation Between Eleetronie Structure of LaNi4 M ( M Ni, Cu, Mn, AI) and Hydrogen Absorption Properties[J-] . Materials Sci- ence and Engineering, 2003, B98 :21-24.
  • 8Pan H G, Jin QW, Gao MX, et al. Effeetof the Cerium Content on the Structural and Electrochemical Properties of the La0.7-zCexMgo.3Ni2.875 Mno. Coo.52s (x = 0 -- 0. 5) Hydrogen Storage Alloys [J]. J. Alloys Compd. ,2004, 373:237.
  • 9Liu Y F, Pan HG, Gao M X, et al. Effect of the Co-Balt Con- tent on the Structural and Electrochemical Properties of the Lao. Mgo. 3 Ni3.4-x Mn0. l Coxhydride Alloys l] : ElectrochemicalProperties[J]. J. Alloys Compd. , 2004,376 : 304.
  • 10H. L. Ding, S. M. Han, Y. Liu, et al. Electrochemical Per- formance Studies on Cobalt and Nickel Electroplated La-Mg-Ni- Based Hydrogen StorageAlloys [J]. J. Alloys Compd., 34 (2009) : 9402-9408.

同被引文献12

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部