介绍了Li-B合金作为最新一代热电池阳极材料所具有的优良性能.重点综述了它在材料的物理化学性能、结构与组成及材料合成机制与制备等方面的研究现状及最新进展.同时介绍了国内Li-B合金阳极的研究现状.
参考文献
[1] | 邓护群;黄伯云;黄培云 等.热电池阳极材料锂硼合金研究进展[J].功能材料,1997,28(02):127. |
[2] | 李志友,邓护群,曲选辉.热电池用锂硼合金阳极材料的制备与性能的研究进展[J].粉末冶金材料科学与工程,1997(01):39-42. |
[3] | GUIDOTTI R A .Thermal batteries: A Technology Review and Future Directions[R].DE 95014859 |
[4] | 高俊奎,黄来和.现代热电池电极材料现状及展望[J].电源技术,2000(06):370-373. |
[5] | 刘志坚,李志友,曲选辉,黄伯云.新型热电池阳极Li-B合金的制备、性能与应用[J].材料科学与工程,2002(02):263-267,250. |
[6] | Wang F E .Metal alloy and method of preparation thereof[P].US 4110111,1978. |
[7] | Mitchell M A;Sutula R A .The Density, Electronical resistivity and hall co-efficient of Li-B alloys[J].Journal of the Less-Common Metals,1978,57:161. |
[8] | Wang F E .An unusual phenomenon in the formation of Li5B4 compound alloy[J].Metallurgical and Materials Transactions,1979,10:343. |
[9] | 李萍乡;窦维喜;翟金铣 .热电池新型锂硼合金阳极材料的研究[J].稀有金属,1996,20(02):120. |
[10] | 刘志坚,曲选辉,李志友,黄伯云.热电池阳极材料Li-B合金的密度分析[J].中国有色金属学报,2001(01):99-102. |
[11] | Lewis H L.[C].Proc Int Pyrotech Semin,1982:446. |
[12] | Szwarc R;Dallek S .The Li(B) Ingot Preparation ScaleUp Study Final Report[R].DE 82015798 |
[13] | James S D;Devries L E .Structure and anodic discharge behavior of lithium-boron alloys in the LiCl-KCl eutectic melt[J].Journal of the Electrochemical Society and Technology,1976,123(03):321. |
[14] | Szwarc R;Walton R D;Dallek S et al.Discharge characteristic of lithium-boron alloy anode in molten salt thermal cells[J].Electrochemical Society:Electrochemical Science and Technology,1982,129(06):1168. |
[15] | Sanchez P;Belin C;Crepy G et al.Preparation and characterization of lithium-boron alloys: Electrochemical studies as anodes in molten salt media,and comparison with pure lithium involving systems[J].Materials Science,1992,27:240. |
[16] | 刘志坚,曲选辉,黄伯云.LiB化合物X射线衍射强度计算与晶胞中电子密度分布[J].金属学报,2001(04):340-344. |
[17] | Liu Zhijian,Duan Wei,Li Zhiyou,Huang Yinghua,Qu Xuanhui,Huang Baiyun.Effects of cathode materials on discharge characteristics of Li-B alloy/FeS2 thermal battery[J].中国有色金属学会会刊(英文版),1999(03):530-534. |
[18] | James S D .Comparison of anodic dischargabilty of Li-B alloy with pure lithium in LiClO4-propylene carbonate[J].Journal of Applied Electrochemistry,1982,12:317. |
[19] | 魏宇,赵桂山.热电池新型负极材料锂硼合金的研究与应用[J].电源技术,2000(05):302-305. |
[20] | Devries L E;Jackson L D .Structure and anodic discharge behavior of lithium-boron alloys in the LiCl-KCl eutectic melt ( Ⅱ )[J].Journal of the Electrochemical Society:Solid State Science and Technology,1979,126(06):993. |
[21] | Dallek S;Ernst D W;Larick B F .Thermal analysis of lithium-boron alloys[J].Electrochemical Society:Electrochemical Science and Technology,1979,26(05):866. |
[22] | Marcac T;Bukovec P;Bukovec N .DSC analysis of lithium rich Li-B alloys[J].Thermochimica Acta,1988,133:305. |
[23] | Worle M.;Nesper R. .Infinite, linear, unbranched borynide chains in LiBx - Isoelectronic to polyyne and polycumulene[J].Angewandte Chemie International Edition,2000(13):2349-2353. |
[24] | Liu Z.;Qu X. .Crystal structure and morphology of a new compound, LiB[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(2):256-264. |
[25] | Ernst D .DSC study of Two Reactions in the lithium-boron alloy system[J].Electrochemical Society:Electrochemical Science and Technology,1982,129(07):1513. |
[26] | 刘志坚,曲选辉,李志友,黄伯云.Mechanism of reaction synthesis of Li-B alloys[J].中国科学E辑(英文版),2003(04):391-400. |
[27] | 刘志坚,曲选辉,李志友,黄伯云.锂硼合金反应合成机制研究[J].中国科学E辑,2003(07):597-603. |
[28] | 赵桂山.国防科技(电子)预研项目中期评估报告[M].天津:天津电源研究所,1998 |
[29] | Liu Z J;Li Z Y;Duan W .Preparation of Li-B alloy and study of its microstructure and discharge characteristics[J].Journal of Materials Science and Technology,2000,16(05):581. |
[30] | 曲选辉;刘志坚;李志友 等.制备热电池阳极材料锂硼合金带的方法[P].CN 99115334.0 |
[31] | Cherepanov V B;Krasnobriyji A V;Kochnew A A .High Temperature batteries with Lithium- Boron Alloy anodes[J].Journal of Power Sources,1995,15:489. |
[32] | 赵桂山;魏字 .锂硼高能热电池研究总结[R].天津:天津电源研究所,1998. |
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%