作为最轻的金属结构材料,Mg合金在轻量化方面已经得到了越来越多的应用.Mg具有较低的电极电位及储氢量较大的特点使得Mg在能源材料方面发挥越来越重要的作用.综述了Mg作为储氢材料和电池材料的研究进展,着重介绍了Mg基储氢材料的性能改善、制备方法等,同时对Mg二次电池和燃料电池体系进行了简要介绍.此外,还较详细地介绍了具有高容量储氢性能的Mg基复杂氢化物的研究现状及结果.
参考文献
[1] | 孙大林,陈国荣,江建军,雷永泉,王启东.新型贮氢材料研究的最新动态[J].材料导报,2004(05):72-75. |
[2] | Audreas Zuettel .Materials for Hydrogen Storage[J].Materials Today,2003,6(09):24-33. |
[3] | 姚素娟.储氢镁合金的研制[J].轻合金加工技术,2003(07):29-30,34. |
[4] | 袁华堂,冯艳,宋赫男,王一菁.镁基储氢合金改性的研究进展[J].化工进展,2003(05):454-458. |
[5] | 王尔德,雷正龙,于振兴.镁基储氢材料的研究进展[J].粉末冶金技术,2003(01):31-36. |
[6] | 迟洪忠,陈长聘,李弘波,任国新.镁基储氢材料研究进展[J].材料工程,2002(08):44-47,29. |
[7] | 唐体春 .镁基储氢合金的制备及其性能研究[D].重庆大学,2007. |
[8] | 董小平,张羊换,王国清,王新林.La-Mg-Ni系贮氢合金的研究进展[J].金属功能材料,2004(06):29-34. |
[9] | 张耀,田琦峰,褚海亮,孙立贤,徐芬,张涛.Mg基非晶合金及La-Mg-Ni基复合物储氢电极的结构与电化学性能[J].合成化学,2007(z1):165-177. |
[10] | 张庆安,赵刚,斯庭智,庞刚.Ca3-xMg2+xNi13合金的储氢性能[J].中国材料进展,2009(05):17-21. |
[11] | Liang G;Hout J;Bofly S et al.Hydrogen Desorption Kinetics of a Mechanically Milled MgH2+5% V Nanocomposite[J].Journal of Alloys and Compounds,2000,305(1-2):239-245. |
[12] | Li WY;Li CS;Ma H;Chen J .Magnesium nanowires: Enhanced kinetics for hydrogen absorption and desorption[J].Journal of the American Chemical Society,2007(21):6710-6711. |
[13] | 于振兴,孙宏飞,王尔德,梁吉,房文斌.添加碳纳米管镁基材料的储氢性能[J].中国有色金属学报,2005(06):876-881. |
[14] | K. Higuchi;K. Yamamoto;H. Kajioka .Remarkable hydrogen storage properties in three-layered Pd/Mg/Pd thin films[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2002(0):526-530. |
[15] | Zhu M;Peng C H;Quang L Z.The Effect of Nanocrystalline Formation on the Hydrogen Storage Properties of AB3-Based Ml-Mg-Ni Multi-Phase Alloys[J].Journal of Alloys and Compounds,2006(426):316-321. |
[16] | Rudy W. P. Wagemans;Joop H. van Lenthe;Petra E. de Jongh;A. Jos van Dillen;Krijn P. de Jong .Hydrogen Storage in Magnesium Clusters: Quantum Chemical Study[J].Journal of the American Chemical Society,2005(47):16675-16680. |
[17] | Zhu M;Zhu W H;Gao Y et al.The Effect of Mg Content on Microstructure and Hydrogen Absorption Properties of Mechanical Alloyed MmNi3.5(CoAlMn)1.5-Mg[J].Materials Science and Engineering,2000,286:130-131. |
[18] | Hu J J;Wu G T;Liu Y F et al.Hydrogen Release from Mg(NH2)2-MgH2 Through Mechanochemical Reaction[J].Journal of Physical Chemistry B,2006,110:14688-14692. |
[19] | Jianjiang Hu;Yongfeng Liu;Guotao Wu .Improvement of Hydrogen Storage Properties of the Li-Mg-N-H System by Addition of LiBH4[J].Chemistry of Materials: A Publication of the American Chemistry Society,2008(13):4398-4402. |
[20] | Lei Y Q;Yang Y M;Wu J et al.Electrochemical Behavior of Some Mechanically Alloyed MgNi-Based Amorphous Hydrogen Storage Alloys[J].Phy Chem Bd,1994,183:379. |
[21] | Yang Q M;Lei Y Q;Chen C P et al.The Thermal Stability of Amorphous Hydride 54Mg50Ni50H54 and Mg30Ni70H45[J].Phy Chem Bd,1994,183:141. |
[22] | Iwakura C;Inoue H;Zhang S G et al.Hydriding and Electrochemical Characteristics of a Homogenous Amorphous Mg2 Ni-Ni Composite[J].A lloys Comp,1998,270:142. |
[23] | T.Kohno;M.Yamamoto .Electrochemical properties of mechanically ground Mg_2Ni alloy[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,1999(0):643-647. |
[24] | 申泮文.储氢材料新合成方法的研究--置换-扩散法合成Mg2Cu[J].高等学校化学学报,1982(04):581. |
[25] | Akiyama T;Isogai H;Yagi J .Hydriding Combustion Synthesis for the Production of Hydrogen Storage Alloy[J].Journal of Alloys and Compounds,1997,252:1-4. |
[26] | L. Li T. Akiyama .Reaction mechanism of hydriding combustion synthesis of Mg2NiH4[J].Intermetallics,1999(6):671-677. |
[27] | Sai Raman S S;Davidson D J;Srivastava O N .On the Synthesis,Characterization and Hydrogenation Behaviour of Mg-Based Composite Materials Mg-x wt.%CFMmNi,Prepared Through Mechanical Alloying[J].Journal of Alloys and Compounds,1999,292(1-2):202-211. |
[28] | Chen P;Xiong ZT;Luo JZ;Lin JY;Tan KL .Interaction of hydrogen with metal nitrides and imides[J].Nature,2002(6913):302-304. |
[29] | Xiong Z T;Wu G T;Hu J J et al.Reversible Hydrogen Storage by a Li-Al-N-H[J].Advanced Functional Materials,2006,17:1137-1142. |
[30] | Xiong Z T;Yong C K;Wu G T.High Capacity Hydrogen Storage in Lithium and Sodium Amidoboranes[J].Nature Materials,2007(07):138-141. |
[31] | Nakamort Y;Kitahara Q;Miwa K et al.Reversible Hydrogen Storage Functions form Mixtures o f Li3 N and Mg3 N2[J].Applied Physics Alloy,2005,80:1-3. |
[32] | Zhitao Xiong;Guotao Wu;Jianjiang Hu;Ping Chen .Ternary Imides for Hydrogen Storage[J].Advanced Materials,2004(17):1522-1525. |
[33] | Ping Chen;Min Zhu .Recent progress in hydrogen storage[J].Materials Today,2008(12):36-43. |
[34] | Hu J J;Wu G T;Liu Y F et al.Hydrogen Release from Mg(NH2)2-MgH2 through Mechanochemical Reaction[J].Journal of Physical Chemistry B,2006,110:14688-14692. |
[35] | Xiong Z T;Wu Q;Hu J et al.Investigations on Hydrogen Storage over Li-Mg-N-H Complex:the Effect of Compositional Changes[J].Journal of Alloys and Compounds,2005,80:1-3. |
[36] | Luo W;Sickafoose S .Thermodynamic and Structural Characterization of the Mg-Li-N-H Hydrogen Storage System[J].Journal of Alloys and Compounds,2006,407:274-228. |
[37] | Nakamori Y;Kitahara G;Miwa K et al.Hydrogen Storage Properties of Li-Mg-N-H Systems[J].Journal of Alloys andCompound,2005,404-406:396-399. |
[38] | Nakamori Y;Kitabara G;Orimo S .Synthesis and Degydriding Studies of Mg-N-H Systems[J].Journal of Power Sources,2004,138:309-312. |
[39] | Jianhui Wang;Tao Liu;Guotao Wu .Potassium-Modified Mg(NH2)2/2 LiH System for Hydrogen Storage[J].Angewandte Chemie,2009(32):5828-5832. |
[40] | Chen P;Xiong Z T;Wu G T .Metal-N-H Systems for Hydrogen Storage[J].Scripta Materialia,2007,56:817-822. |
[41] | Z. Xiong;J. Hu;G. Wu .Hydrogen absorption and desorption in Mg-Na-N-H system[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2005(1/2):209-212. |
[42] | Yongfeng Liu;Jianjiang Hu;Zhitao Xiong .Investigations on hydrogen desorption from the mixture of Mg(NH_2)_2 and CaH_2[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):298-302. |
[43] | Y. Nakamori;G. Kitahara;K. Miwa .Hydrogen storage properties of Li-Mg-N-H systems[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2005(0):396-398. |
[44] | Gregory T;Hoffman R;Winterton R .Nonaqueous Electrochemistry of Magnesium[J].Journal of the Electrochemical Society,1990,137:775-780. |
[45] | Aurbach D;Lu Z;Schechter A et al.Prototype System for Rechargeable Magnesium Batteries[J].Nature,2000,407:724-727. |
[46] | Doron Aurbach;Haim Gizbar;Alex Schechter .Electrolyte Solutions for Rechargeable Magnesium Batteries Based on Organomagnesium Chloroaluminate Complexes[J].Journal of the Electrochemical Society,2002(2):A115-A121. |
[47] | Aurbach, D;Suresh, GS;Levi, E;Mitelman, A;Mizrahi, O;Chusid, O;Brunelli, M .Progress in rechargeable magnesium battery technology[J].Advanced Materials,2007(23):4260-4267. |
[48] | NuLi Y N;Yang J;Wang J L.Highly Reversible Magnesium Deposition and Dissolution in Ionic Liquid[J].Electrochemical and Solid-State Letters,2005(08):C166-C169. |
[49] | Nuli YN;Yang J;Wang P .Electrodeposition of magnesium film from BMIMBF4 ionic liquid[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2006(23):8086-8090. |
[50] | Wang P;NuLi YN;Yang J;Feng ZZ .Mixed ionic liquids as electrolyte for reversible deposition and dissolution of magnesium[J].Surface & Coatings Technology,2006(6):3783-3787. |
[51] | Nuli Y N;Guo Z P;Liu H K.A New Class of Cathode Materials for Rechargeable Magnesium Battries:Organosufur Compounds Based on Sulfur-Sulfur Bonds[J].Electrochemistry Communications,2007(09):1913-1917. |
[52] | Zhenzhen Feng;Jun Yang;Yanna NuLi;Jiulin Wang .Sol-gel Synthesis Of Mg_(1.03)mn_(0.97)sio_4 And Its Electrochemical Intercalation Behavior[J].Journal of Power Sources,2008(2):604-609. |
[53] | Feng ZZ;Yang J;Nuli Y;Wang JL;Wang XJ;Wang ZX .Preparation and electrochemical study of a new magnesium intercalation material Mg1.03Mn0.97SiO4[J].Electrochemistry communications,2008(9):1291-1294. |
[54] | Yanna NuLi;Jun Yang;Jiulin Wang .Electrochemical Intercalation of Mg~(2+) in Magnesium Manganese Silicate and Its Application as High-Energy Rechargeable Magnesium Battery Cathode[J].The journal of physical chemistry, C. Nanomaterials and interfaces,2009(28):12594-12597. |
[55] | Orit Chusid;Yosef Gofer;Haim Gizbar;Yulia Vestfrid;Elena Levi;Doron Aurbach;Israel Riech .Solid-State Rechargeable Magnesium Batteries[J].Advanced Materials,2003(7/8):627-630. |
[56] | 袁华堂;曹建胜;王永梅 .可充镁电池[P].CN1411083A,2003-04-16. |
[57] | 石春梅;曾小勤;常建卫.AZ31合金作为镁二次电池负极材料的研究[J].中国有色金属学报,2009 |
[58] | 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. |
[59] | Muniyandi N;Mathur P B .Study on Magnesium and Its Alloys in Baterry Electrolytes[J].Corrosion,1991,27(01):68-71. |
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%