新能源是降低碳排放、优化能源结构、实现可持续发展的重要途径,新能源材料是引导和支撑新能源发展的重要基础,在新能源系统中得到了大量应用.概要介绍了目前在新能源发展过程中发挥重要作用的核用锆合金、锂离子电池关键材料、镍氢动力电池关键材料及氢能燃料电池关键材料等新能源材料的现状及存在问题.
参考文献
[1] | 刘承新.锆合金在核工业中的应用现状及发展前景[J].稀有金属快报,2004(05):21-23. |
[2] | 周邦新;赵文金;苗志 et al.改善锆-4合金耐腐蚀性能的研究[J].核科学与工程,1995,15(03):242-249. |
[3] | 赵文金;周邦新 .锆-4合金中第二相的研究[J].核动力工程,1991,12(05):67-72. |
[4] | 赵文金,周邦新,苗志,彭倩,蒋有荣,蒋宏曼,庞华.我国高性能锆合金的发展[J].原子能科学技术,2005(z1):2-9. |
[5] | P. Mukherjee;P. M. G. Nambissan;Pintu Sen;P. Barat;S. K. Bandyopadhyay .Proton irradiation effects in Zr-1.0 Nb-1.0 Sn-0.1 Fe probed by positron annihilation[J].Journal of Nuclear Materials: Materials Aspects of Fission and Fusion,1999(3):338-342. |
[6] | 赵文金.法国压水堆燃料元件新一代包壳材料的发展[J].核动力工程,2000(03):278-284. |
[7] | Nikulina A V;Bibilashvili Y K;Markelov P P.Zirconium in the Nuclear Industry[A].Philadelphia:ASTM,1996:785-804. |
[8] | 袁改焕;李恒羽;王德华 .锆材在核电站的应用及前景[J].综合评述,2007,14:1-3. |
[9] | Tsutomu Ohzuku;Ralph J. Brodd .An overview of positive-electrode materials for advanced lithium-ion batteries[J].Journal of Power Sources,2007(2):449-456. |
[10] | Yao C Y;Kao T H;Cheng C H et al.Studies of Electrochemical Properties of Lithium Cobalt Oxide[J].Journal of Power Sources,1995,54(02):491-493. |
[11] | 孙玉成,卢世刚,刘人敏.尖晶石LiMn2O4高温电化学性能研究[J].电源技术,2000(06):333-335. |
[12] | Huang YH;Park KS;Goodenough JB .Improving lithium batteries by tethering carbon-coated LiFePO4 to polypyrrole[J].Journal of the Electrochemical Society,2006(12):A2282-A2286. |
[13] | Yao Chen;G.X. Wang;K. Konstantinov;H.K. Liu;S.X. Dou .Synthesis and characterization of LiCo_xMn_yNi_(1-x-y)O_2 as a cathode material for secondary lithium batteries[J].Journal of Power Sources,2003(119/121):184-188. |
[14] | Martin Winter;Jurgen O. Besenhard .Electrochemical lithiation of tin and tin-based intermetallics and composites[J].Electrochimica Acta,1999(1/2):31-50. |
[15] | Ohzuku T.;Yamamoto N.;Ueda A. .ZERO-STRAIN INSERTION MATERIAL OF LI[LI1/3TI5/3]O-4 FOR RECHARGEABLE LITHIUM CELLS[J].Journal of the Electrochemical Society,1995(5):1431-1435. |
[16] | 孟良荣,王金良.电动车电池现状与发展趋势[J].电池工业,2006(03):202-206. |
[17] | 张丽华.稀土贮氢合金现状及市场前景[J].稀土信息,2006(10):23-26. |
[18] | 张丽华,宿峻瑶.聚焦2004年镍氢电池产业[J].稀土信息,2005(03):25-26. |
[19] | [OL].http://www.seftb.org/mhypage.exe?HYPAGE=/SEFcontent.asp&locationid=1&SEFfinancialnewsid=220967,2009-07-22. |
[20] | [OL].http://cn.reuters.com/article/asiaNews/idCNChina-12855-20080528,2008-05-28. |
[21] | 郑雪萍,曲选辉,李平.稀土系储氢合金性能影响因素的研究现状[J].金属功能材料,2006(06):32-36. |
[22] | 杨萍.贮氢合金的研究和进展[J].上海有色金属,2006(03):35-36,47. |
[23] | 董桂霞,朱磊,杜军,吴伯荣,陈晖,简旭宇,刘明义.低温MH/Ni电池负极材料的研究方法[J].材料导报,2005(10):104-106,112. |
[24] | 韩选利,侯雪燕,许妮君,朱睿.稀土-镁-镍系贮氢合金电极材料的最新研究进展[J].稀土,2007(05):97-103. |
[25] | 许剑轶,闫汝煦,王大辉,罗永春,徐广胜,康龙.A2B7型La0.75Mg0.25Ni3.5-xAlx(x=0~0.3)合金相结构及电化学性能[J].稀有金属材料与工程,2007(02):349-353. |
[26] | 赵会明.可适应零下40 ℃镍-氢电池研制成功[J].中小企业科技,2006(03):43. |
[27] | [OL].http://www.ic37.com/htm_news/2007-8/132506_170840.htm,2007-08-03. |
[28] | 樊晓光,吴伯荣,朱磊,简旭宇,陈晖.复合添加Lu2O3和Er2O3对镍氢电池Ni(OH)2正极高温性能的影响[J].稀有金属,2007(01):81-85. |
[29] | 简旭宇,成艳,朱磊,陈晖,王忠,尉海军,蒋利军.高温镍氢动力电池用镍电极的研究[J].合成化学,2007(z1):195-200. |
[30] | 刘元刚,唐致远,徐强,张晓阳,柳勇.α-Ni(OH)2的研究进展[J].化学进展,2006(07):883-888. |
[31] | Ai Zhouping.PGMs in Industrial Applications and Recycling[A].Beijing:Metallurgic Press,2008:6. |
[32] | Piotr Zelenay;Bashyam R .Advanced Cathode Catalysts,FY 2007 Annual Progress Report of DOE Hydrogen Program[OL].http://www.hydrogen.energy.gov/annual_progress07.html,2007. |
[33] | Stephen Grot;Walther Grot .Platinum Recycling Technology Development,FY 2008 Annual Progress Report of DOE Hydrogen Program[OL].http://www.hydrogen.energy.gov/annual_progress08.html,2008. |
[34] | [OL].http://www1.eere.energy.gov/hydrogenandfuelcells/storage/pdfs/targets_onboard_hydro_storage.pdf |
[35] | Liu Xiaopeng;Jiang Lijun .Improve Plateau Property of Ti32Cr46V22 BCC Alloy with Heat Treatment and Ce Additive[J].Journal of Alloys and Compounds,2009,471:L36-L38. |
[36] | Bogdanovic B;Schwichardi M .Ti-Doped Alkaki Matel Aluminum Hydrides as Potential Novel Reversible Hydrogen Storage Materials[J].Journal of Alloys and Compounds,1997,253:1-9. |
[37] | 庄鹏辉;刘晓鹏;李志念 et al.钛锆氢化物催化NaAlH4可逆储放氢性能研究[J].中国有色金属学报,2008,18:671-674. |
[38] | Chen P;Xiong ZT;Luo JZ;Lin JY;Tan KL .Interaction of hydrogen with metal nitrides and imides[J].Nature,2002(6913):302-304. |
[39] | Xiong Z T;Yong C K;Wu G T.High-Capacity Hydrogen Storage in Lithium and Sodium Amidoboranes[J].Nature Materials,2008(07):138. |
[40] | Brian C;Steele B C H;Heinzel A .Review Article Materials for Fuel-Cell Technologies[J].Nature,2001,414:345-352. |
[41] | Singhal S C;Kendall K.High Temperature Solid Oxide Fuel Cells:Fundamentals,Design and Applications[M].Amsterdam:Elsevier Science Press,2004 |
[42] | Jai-Woh Kim;Anil V. Virkar;Kuan-Zong Fung;Karun Mehta;Subhash C. Singhal .Polarization effects in intermediate temperature, anode-supported solid oxide fuel cells[J].Journal of the Electrochemical Society,1999(1):69-78. |
[43] | Wei Guo Wang;Yi-Lin Liu;Rasmus Barfed .Nanostructured Lanthanum Manganate Composite Cathode[J].Electrochemical and solid-state letters,2005(12):A619-A621. |
[44] | Steele B C H .Appraisal of Ce1-yGdyO2-y/2 Electrolytes for IT-SOFC Operation at 500 ℃[J].Solid State Ionics,1997,129:95-110. |
[45] | Goodenough JB. .CERAMIC SOLID ELECTROLYTES[J].Solid state ionics,1997(1/4):17-25. |
[46] | Wang WG;Mogensen M .High-performance lanthanum-ferrite-based cathode for SOFC[J].Solid state ionics,2005(5/6):457-462. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%