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简要回顾了稀土贮氢合金负极材料的发展历史,对已有的研究领域及相关的研究结果进行了评述.指出了稀土贮氢合金负极材料目前存在的主要问题,预测了稀土贮氢合金负极材料未来的研究及发展方向.

参考文献

[1] Broom D P et al.Magnetic properities of commercial metal hydride battery materials[J].Journal of Alloys and Compounds,1999,293-295:255-259.
[2] Kuochih Hong .The development of hydrogen storage electrode alloys for nickel hydride batteries[J].Journal of Power Sources,2001(1):85-89.
[3] 余成洲,赖为华.氢镍电池的现状与发展方向[J].电池,2001(02):58-61.
[4] 江建军;雷永泉 等.稀土系AB5型贮氢电极合金材料优化设计原理[J].电源技术,1998,22(02):61-64.
[5] M. Jurczyk;M. Nowak;E. Jankowska .Structure and electrochemical properties of the mechanically alloyed La(Ni,M)_5 materials[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2002(1/2):339-343.
[6] 张文魁,马淳安,黄辉,杨晓光,雷永泉,王启东.合金化对ZrMn2基Laves相贮氢合金相组成的影响[J].中国有色金属学报,2002(05):897-901.
[7] Feng F et al.Electrochemical behaviour of intermetallic-bssed metal hydrides used in Ni/metal hydride(MH) batteries:a review[J].International Journal of Hydrogen Energy,2001,26:725-734.
[8] Ye H.;Lei Y.Q. .Electrochemical characteristics of amorphous Mg_(0.9)M_(0.1) Ni (M=Ni, Ti, Zr, Co and Si) ternary alloys prepared by mechanical alloying[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(2):194-199.
[9] 孙东升;张昭良;李国勋 .贮氢合金应用研究近况[J].功能材料,1997,28(02):215-220.
[10] 郑庆元 等.贮氢合金的开发与研究进展[J].河南科学,1998,16(04):422-4248.
[11] 高岩;罗堪昌 等.TiFe二元系在机械合金化过程中的结构转变及纳米晶TiFe储氢合金的制备[J].功能材料,1998,29(03):256-259.
[12] 张书凯 .贮氢电极合金的化学成分和制备技术对合金相结构和电化学性能的影响[D].浙江大学,2001.
[13] Tsukahara M et al.Phase structure of V-based solid solutions containing Ti and Ni and their hydrogen absorption-desorption properties[J].Journal of Alloys and Compounds,1995,224(01):162-167.
[14] Tsukahara M;Takahashi K;Mishima T et al.Vanadium-based solid solution alloys with three-dimensional network structure for high capacity metal hydride electrodes[J].Journal of Alloys and Compounds,1997,253-254:583-586.
[15] Adzic GD.;Reilly JJ.;Mcbreen J.;Mukerjee S.;Kumar MPS. Zhang W.;Srinivasan S.;Johnson JR. .CERIUM CONTENT AND CYCLE LIFE OF MULTICOMPONENT AB(5) HYDRIDE ELECTRODES[J].Journal of the Electrochemical Society,1995(10):3429-3433.
[16] 赵爽,林勤,朱大建,陈宁,袁永文.Sn对稀土系贮氢合金性能的影响[J].中国有色金属学报,2000(01):73-76.
[17] 陈立新.贮氢电极合金Ml(NiMnTi)4.2Co0.8-xFex(x=0~0.8)的电化学性能[J].稀有金属材料与工程,1999(05):302.
[18] 江建军,雷永泉,孙大林.非化学计量比贮氢电极合金的电化学性能和结构及热力学研究[J].稀有金属材料与工程,1997(03):14-19.
[19] 王凤娥.贮氢合金常见表面处理技术的研究和进展[J].稀有金属,2000(05):383-387.
[20] 孙春文,唐致远,郭鹤桐,胡万起,李道昭.化学镀Ni-Co-P合金对Mm(NiCoAlMn)5贮氢合金电极动力学性能的影响[J].中国稀土学报,2001(02):115-120.
[21] 周煜;雷永泉 等.气体雾化贮氢合金Ml(NiCoMnTi)5的活化性能[J].金属学报,1996,32(08):857-861.
[22] 刘开宇,张平民,唐有根,桑商斌,杨幼平.高倍率贮氢合金的二段热处理研究[J].电池,2003(03):136-138.
[23] 马建新,潘洪革,田清华,朱云峰,李寿权,陈长聘.热处理温度对AB5型MlNi 3.60C0 0.85Mn 0.40Al 0.15 贮氢电极合金微结构和电化学性能的影响[J].中国有色金属学报,2001(04):587-592.
[24] 李全安,陈云贵,韩满贵,涂铭旌.表面处理对镧镨铈贮氢合金电极电化学性能的影响[J].表面技术,2002(01):19-22.
[25] 陈立新,徐建红,雷永泉.缓冲溶液浸渍处理对贮氢合金Mm(NiCoMnAl)5电化学性能的影响[J].稀有金属材料与工程,2001(01):58-60.
[26] 苏小笛;刘昭林 .贮氢合金电极有机酸处理研究[J].电池,1997,27(06):263-265.
[27] Qiang Liu;Li-Fang Jiao;Hua-Tang Yuan .The improvement of the performance of AB_5 hydrogen alloy with MgNi_2 added for high-power Ni/H batteries[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):275-280.
[28] S. Rivoirard;P. de Rango;D. Fruchart .Catalytic effect of additives on the hydrogen absorption properties of nano-crystalline MgH_2 (X) composites[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2003(0):622-625.
[29] Jurczyk M.;Majchrzycki W. .Electrochemical behaviour of nanostructured Mm(Ni, Al, Co)_5 alloy as MH_x electrode[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(2):311-316.
[30] Gao Y.;Zeng MQ.;Li BL.;Zhu M.;Chung CY. .Solid state reaction and formation of nano-phase composite hydrogen storage alloy by mechanical alloying of MmNi(3.5)(CoMnAl)(1.5) and Mg[J].Journal of Materials Science,2003(11):2499-2504.
[31] 席生岐,周恩敬,郑锐,蔚富海.高能球磨Mg-Ni纳米晶合金的吸氢反应特点[J].稀有金属材料与工程,2002(06):464-467.
[32] S. Bliznakov;N. Drenchev;B. Drenchev .Electrochemical properties of nanocrystalline Mg_2Ni-type alloys prepared by mechanical alloying[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2005(0):682-686.
[33] Yang-Huan Zhang;Xiao-Ping Dong;Shi-Hai Guo;Guo-Qing Wang;Jiang-Yuan Ren;Xin-Lin Wang .Microstructures and electrochemical performances of La_2Mg(Ni_(0.85)Co_(0.15))_9M_x (M = B, Cr, Ti; x = 0, 0.1) electrode alloys prepared by casting and rapid quenching[J].International journal of hydrogen energy,2006(1):63-69.
[34] Yang-Huan Zhang;Xiao-Ping Dong;Shi-Hai Guo;Guo-Qing Wang;Jiang-Yuan Ren;Xin-Lin Wang .Microstructures and electrochemical performances of La_2Mg(Ni_(0.85)Co_(0.15))_9M_x (M = B, Cr, Ti; x = 0, 0.1) electrode alloys prepared by casting and rapid quenching[J].International journal of hydrogen energy,2006(1):63-69.
[35] Zhang Yang-Huan.Microstructures and electrochemical performances of La2 Mg(Ni0.85 Co0.15)9 Crx (x = 0-0.2) electrode alloys prepared by casting and rapid quenching[J].Journal of Power Sources,2005(144):255-261.
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