欢迎登录材料期刊网

材料期刊网

高级检索

氢能的储存是氢能利用的关键,一维碳纳米材料具有非常高的比表面积及一些常规材料所不具备的特异效应和性能,因此有望成为颇具优势的储氢材料.通过简述一维碳纳米材料储氢在各国的研究成果,表明其储氢容量比现有的一般储氢技术高1至2个数量级,引起世人的瞩目;详细介绍了碳纳米纤维的储氢机理,可能包括氢的物理和化学吸附两种形式,详细情况尚待深入研究;除此以外,还有许多诸如:如何提高体积储氢密度和氢的吸脱附速度及动力学和实用条件下的吸放氢研究等问题需要解决.

参考文献

[1] New Energy;Industrial Technology Development Orgnization.Interntional clean energy network using hydrogen conversion(WE-NET)[A].NEDO,1998
[2] Iijima S .Helical Microtubules of Griphitic Carbon[J].Nature,1991,354:56-58.
[3] Lidholobov V A;Fenelonov V B;Okkel L G et al.New Carbon-carbonaceous composites for catalysis and adsorption[J].Reaction Kinetics and Catalysis Letters,1995,54(02):381-411.
[4] A. C. Dillon;K. M. Jones;T. A. Bekkedahl;C. H. Kiang;D. S. Bethune;M. J. Heben .STORAGE OF HYDROGEN IN SINGLE-WALLED CARBON NANOTUBES[J].Nature,1997(6623):377-379.
[5] Chambers A;Park C;Baker R T K et al.Hydrogen storage in graphite nanofibers[J].Journal of Physical Chemistry B,1998,102:4253-4256.
[6] Chen P;Wu X;Lin J et al.High H uptake by alkali-doped carbon nanotubes under ambient pressure and moderate temperatures[J].Science,1999,285:91.
[7] 毛宗强,徐才录,阎军,梁吉,孙公敏,魏秉庆,吴德海.碳纳米纤维储氢性能初步研究[J].新型炭材料,2000(01):64-67.
[8] Liu C;Fan Y Y;Liu M et al.Hydrogen storage in single-walled carbon nanotubes at room temperature[J].Science,1999,286:1127-1129.
[9] 范月英;刘敏;成会明.纳米碳纤维的吸氢研究[A].,1999:582.
[10] Fan Y Y;Liao B;Liu M et al.Hydrogen uptake in vaporgrown carbon nanofibers[J].Carbon,1999,37:1649-1652.
[11] 范月英;刘敏;廖彬 等.纳米炭纤维的储氢性能初探[J].材料研究学报,1999,13(03):230-233.
[12] Wang Q;Johoson J K .Optimization of carbon nanotube arrays for hydrogen adsorption[J].Journal of Physical Chemistry B,1999,103:4809-4813.
[13] Farida D;Dominigue L .High adsorption of opened carbon nanotubes at 77K[J].Journal of Physical Chemistry B,2000,104:4618-4624.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%