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通过沉淀法和相转移法的结合制备纳米催化剂.采用该催化剂催化裂解甲烷反应制备出了一维纳米网状碳材料,此类碳材料的比表面积为286m2/g.预计该材料具有良好的储氢、吸附性能.

参考文献

[1] 卞国柱,韩波,伏义路.Ni-Mo氧化物超细粒子催化剂的制备与表征[J].物理化学学报,1999(11):1001-1004.
[2] 胡征;范以宁;陈懿 等.粒度均匀镍-磷非晶超细微粒催化剂的制备与表征[J].物理化学学报,1993,9(01):5.
[3] Lesage P.;Moral P.;Didillon B.;Candy JP.;Basset JM.;Clause O. .SURFACE ORGANOMETALLIC CHEMISTRY ON METALS - PREPARATION OF BIMETALLIC CATALYSTS BY CONTROLLED HYDROGENOLYSIS OF SN(N-C4H9)(4) ON A NI/SIO2 CATALYST[J].Journal of Catalysis,1995(2):238-248.
[4] Sault A G;Peden Charles H F;Boespflug E P .Metal-Support Interactions in Hydrous Titanium Oxide Supported Nickel Catalysts[J].Journal of Physical Chemistry,1994,98:1652.
[5] Perez M. .Preparation of Ni/ZrO_2-SO_4~(2-) catalysts by incipient wetness method:effect of nickel on the isomerization of n-butane[J].Journal of molecular catalysis, A. Chemical,1999(0):169-178.
[6] Iijima S .Helical Microtubules of Griphitic Carbon[J].Nature,1991,354(6348):56.
[7] Cui S;Lu C Z;QIAO Y L et al.Large-scale Preparation of Carbon Nanotubes by Nickel Catalyzed Decomposition of Methane at 100℃[J].Carbon,1999,37(12):2070.
[8] 崔屾.催化法制备纳米碳材料和纳米镁材料[J].自然科学进展,1999(11):1050.
[9] 崔屾;李永丹;张鎏 .镍催化裂解甲烷气相生长碳纤维[J].Chinese Science Bulletin,1996,41:2011.
[10] 崔屾;乔亚莉;崔兰.催化裂解甲烷制备纳米碳材料[A].北京:海潮出版社,1998:571.
[11] CUI S.Vapor-Grown Carbon Fibers by Catalytic Pyrolysic of Methane[A].,1997:175.
[12] CUI S;Lu C Z;QIAO Y L.Investigation of SAED and TEM on Carbon Species Fored from Methane Decomposition[A].France,1998:869.
[13] 刘文西;黄孝瑛;陈玉如.材料结构电子显微分析[M].天津:天津大学出版社,1989:167.
[14] Lui C;Fan Y Y;Cheng H M.Hydrogen storage in single-walled carbon nanotubes at room temperature[J].SCIENCE,1999(286):1127.
[15] PEIGNEY A;Laureut Ch;Flahaut E.Specific surface area of carbon nanotubes and bundles of carbon nan otubes[J].CARBON,2001(39):507.
[16] 崔屾,王雷,乔亚莉,崔兰.焙烧法纯化多壁碳纳米管[J].应用化学,2000(04):417-419.
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