介绍了镁电池的类型、工作原理、特点及应用现状,探讨了当前存在的问题及研究方向,并展望了其应用前景.镁电池具有成本低、无毒、高比能量、工作温度范围宽、资源丰富、可再生等特点,在军事和民用方面有广泛的用途.镁合金的极化和腐蚀是影响镁电池大规模应用的主要障碍之一,研究镁电池负极材料及其氧化膜结构,使其能找到合适的正极材料和电解液,是今后镁电池研究的重要内容和方向.
参考文献
[1] | 尧玉芬,陈昌国,刘渝萍,王荣.镁电池的研究进展[J].材料导报,2009(19):119-121. |
[2] | Aurbach D;Lu Z;Schechter A et al.Prototype system for rechargeable magnesium batteries[J].Nature,2000,407:724. |
[3] | 李吉刚,孙杰.镁二次电池材料的国内外研究现状[J].合成化学,2007(z1):235-239. |
[4] | 彭成红,朱敏.镁电池研究进展[J].电池,2003(02):121-123. |
[5] | Sheha E;El-Mansy M K .A high voltage magnesium battery based on H2SO《,4》-doped (PVA)《,0.7》 (NaBr)《,0.3》 solid polymer electrolyte[J].Journal of Power Sources,2008,185:1509. |
[6] | Zhang Ziyan;Chen Kanghua;Ni Erfu .Effect of magnesium on the electrochemical behavior of lithium anode in LiOH aqueous solution used for lithium-water battery[J].Electrochimica Acta,2010,55:3830. |
[7] | Thirunakaran R;Vasudevan S;Sivasbanmugam A et al.Electrochemical behaviour of mono-chloronitrobenzcne as cathode material for magnesium reserve batteries[J].Journal of Power Sources,2005,148:112. |
[8] | 杨维谦,杨少华,孙公权,辛勤.镁燃料电池的发展及应用[J].电源技术,2005(03):182-186. |
[9] | Wood Robert T .Magnesium primary cell[P].US,1696873,1928-12-25. |
[10] | Wood Robert T .Magnesium anode dry cell[P].US,789526,1956-04-19. |
[11] | 石春梅,曾小勤,常建卫,努丽燕娜,丁文江.镁二次电池的研究现状[J].电源技术,2010(09):975-978. |
[12] | 李吉刚,孙杰,王凤彦.可充镁电池电解质研究现状[J].化工进展,2008(02):214-217. |
[13] | Oxley J E;Ekern R J.Magnesium dry cells[A].,1992:22. |
[14] | Aurbach D;Weissman I;Goffr Y et al.Nonaqueous magnesium electrochemistry and its application in secondary batteries[J].Chemical Record,2003,3:61. |
[15] | Gregory T D;Hoffman R J;Winterton R C .Nonaqueous electrochemistry of magnesium:Application to energy storage[J].Journal of the Electrochemical Society,1990,137(03):775. |
[16] | Jurgen O. Besenhard;Martin Winter .Advances in Battery Technology: Rechargeable Magnesium Batteries and Novel Negative-Electrode Materials for Lithium Ion Batteries[J].Chemphyschem: A European journal of chemical physics and physical chemistry,2002(2):155-159. |
[17] | 李吉刚;孙杰.镁二次电池材料的国内外研究现状[A].,2007:235. |
[18] | 沈健,彭博,陶占良,陈军.镁二次电池正极材料和电解液研究[J].化学进展,2010(02):515-521. |
[19] | Nobuko Yoshimoto;Shin Yakushiji;Masashi Ishikawa;Masayuki Morita .Rechargeable magnesium batteries with polymeric gel electrolytes containing magnesium salts[J].Electrochimica Acta,2003(14/16):2317-2322. |
[20] | 张海朗,王文继.镁二次电池研究评述[J].现代化工,2002(11):13-16. |
[21] | 王璞 .二次电池新材料新体系的研究[D].上海交通大学,2007. |
[22] | 张佩红 .镁电池负极材料的电化学行为研究[D].重庆大学,2009. |
[23] | 袁望治.镁固态电池[J].贵州工学院学报,1996(01):86. |
[24] | Daichi I;Masaru M .Characterization of magnesium-intercalated V2O《,5》/carbon composites[J].Solid-State Ionicis,2003,161:173. |
[25] | 余琨,宋觉敏,蔡志勇,杨军,薛新颖,雷路.镁及镁合金电池阳极材料的研究、开发及应用[J].金属功能材料,2010(04):66-71. |
[26] | Aurbach D;Gofer Y;Lu Z et al.A short review on the comparison between Li battery systems and rechargeable magnesium battery technology[J].Journal of Power Sources,2001,97-98:28. |
[27] | Specht S J.Advanced batteries for electrically powered underwater vehicles[A].,1987:141. |
[28] | 尧玉芬 .镁电池电解液的研究[D].重庆大学,2009. |
[29] | 马正青,黎文献,余琨,王日初,梁英,曹军纪,尹宁,李学海.海水介质中高活性镁合金负极的电化学性能[J].材料保护,2002(12):16-18. |
[30] | 马正青,庞旭,左列,曹琳,曾苏民.镁海水电池阳极活化机理研究[J].表面技术,2008(01):5-7. |
[31] | 唐有根,黄伯云,卢凌彬,刘东任.金属燃料电池[J].物理,2004(02):85-89. |
[32] | Yamamoto O;Kanbara T;ho S .Magnesium alloy battery[P].US,6265109,2001-07-02. |
[33] | Venkatesara R K .Performance evaluation of Mg-AgCl batteries for underwater propulsion[J].Denf Sei J,2001,51(02):161. |
[34] | Firas S;Kib L;Li W L .Water-activated disposable and long shelf-life microbattcries[J].Sensors and Actuators A: Physical - Elsevier,2004,111:79. |
[35] | 邓姝皓,易丹青,赵丽红,周玲伶,王斌,冀成年,兰博.一种新型海水电池用镁负极材料的研究[J].电源技术,2007(05):402-405. |
[36] | Zhao Hongyang;Bian Pei;Ju Dongying.Electrochemical performance of magnesium alloy and its application on the sea water battery[J].Journal of Environmental Sciences,2009(Suppl):S88. |
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