Journal of Guangdong University of Technology ›› 2007, Vol. 24 ›› Issue (4): 1-5.
• Comprehensive Studies • Next Articles
[1] 张文锋,曾葆青,赵艳珩,赵约瑟,杨中海. 碳纳米管/聚四氟乙烯复合材料场发射特性研究[J]. 功能材料. 2006(07) [2] 易双萍,张海燕,欧阳玉,王银海,庞晋山. 真空热处理碳纳米管的储氢性能研究[J]. 物理学报. 2006(05) [3] 米万良,李永丹,张宝泉. 化学气相沉积法制备碳纳米管过程中NH3对其微观结构和石墨化程度的影响[J]. 化工学报. 2006(04) [4] 曹章轶,孙卓,郭平生,陈奕卫. 碳源流量对碳纳米管厚膜形貌和结构的影响[J]. 无机材料学报. 2006(01) [5] 朱燕娟,林天津,张国富,邓颖宇,薛新民,刘秋香,张海燕. 稀土合金催化裂解乙炔合成管径可控的碳纳米管[J]. 中国稀土学报. 2005(03) [6] 王红娟,彭峰,黎志欣,朱汉才,邝志敏. Fe-Mo/MgO催化剂CVD法制备碳纳米管[J]. 化学反应工程与工艺. 2005(01) [7] 赵艳珩,曾葆青,赵约瑟,张文锋,田浩希. 定向碳纳米管薄膜的制备[J]. 材料导报. 2006(S1) [8] 王起才,李梦轲,力虎林,黄良甫. MgO载体化学气相沉积法制备碳纳米管的影响因素[J]. 真空科学与技术学报. 2004(01) [9] 朱燕娟,邓淑华,易双萍,钟韶,陈玉莲,何艳阳,张海燕. 水热法合成氧化镍-二氧化硅催化剂及其用于碳纳米管的制备[J]. 无机材料学报. 2003(06) [10] 计道珺,李轩科,汪厚植,洪学勤,陈家唯. 反应时间对CVD法制备多壁碳纳米管产率和形貌的影响[J]. 炭素技术. 2002(05) [11] 陈程雯,蔡云,林银钟,林敬东,陈鸿博,廖代伟. 催化裂解CH4制备碳纳米管的影响因素[J]. 化学物理学报. 2002(02) [12] 魏忠,陈言,刘忠范. 单壁碳纳米管的CVD合成及管径分布[J]. 物理化学学报. 2001(08) [13] 刘宝春,唐水花,高利珍,梁奇,张伯兰,瞿美臻,熊贵志,于作龙. 利用沸腾床反应器制备碳纳米管[J]. 催化学报. 2001(02) [14] 夏玉学,王维彪,陈明,梁静秋,雷达,陈松,刘丽丽,姜锦秀. 无氢化学气相沉积法制备碳纳米管[J]. 功能材料与器件学报. 2005(04) [1] A. Fonseca,K. Hernadi,P. Piedigrosso,J.-F. Colomer,K. Mukhopadhyay,R. Doome,S. Lazarescu,L.P. Biro,P. Lambin,P.A. Thiry,D. Bernaerts,J.B. Nagy. Synthesis of single- and multi-wall carbon nanotubes over supported catalysts[J] ,1998[1] GAO Yan,WANG Zhenjia,WANG Rui,et al.Preparationand characterization of MWCNTs/E44. Materials Sci-ence&Technology . 2006[2] KING Jilan,ZHOU Shangqi,Qin Ren,et al.Study of Elec-troless Ni-P-CNTs Composite Plating. Chemical Phys-ics . 2006[3] MAREK Trojanowicz.Analytical applications of CarbonNanotubes:a Review. Trends in Analytical Chemistry . 2006[4] AGO H,OHSHIMA S,YUMURA M,et al.Formationmechanism of carbon nanotubes in the gas-phase synthe-sis from colloidal solutions of nanoparticles. Current Applied Physics . 2005[5] FONSECA A,HERNADI K,PIEDIGROSSO P,et al.Syn-thesis of single-and multi-wall carbon nanotubes oversupported catalysts. Applied Physics . 1998[6] ZHU Yanjuan,LIN Tianjin,ZHANG Chunhua,et al.Theeffect of nickel content of composite catalysts synthesizedby hydrothermal method on the preparation of carbonnanotubes. Materials Science and Engineering:B . 2006[7] ZHANG Haiyan,CHEN Yiming,LI Shunhua,et al.Hydro-gen storage for carbon nanotubes synthesized by the pyrol-ysis method using lanthanum Nickel alloy as catalyst. Journal of Appl Phys . 2003[8] Iijimas S.Helical microtubules of graphitic carbon. Nature . 1991[9] ZHAO Yuan-di,BI Yan-hua,ZHANG Wei-de.The Interface Behavior of Hemoglobin at Carbon Nanotubes and the Detec-tion for H2O2. Talanta . 2005[10] Ivanor,Nagy I B,Lambin P et al.The study of carbon nanotubles produced by catalytic method. The Journal of Chemical Physics . 1994[11] Sun L F,Mao J M,Pan Z W,et al.Growth of Straight Nanotubes with a Cobalt-nickel Catalyst by Chemical Vapor Deposition. Applied Physics . 1999[12] Otsuka K,Abe Y,Kanai N,et al.Synthesis of carbon nanotubes on Ni carbon-fiber catalysts under mild conditions. Carbon . 2004[13] Lim S,Shimizu A,Yoon S H,et al.High yield preparation of tubular carbon nanofibers over supported Co-Mo catalysts. Carbon . 2004[14] AM Benito,Y Maniette,E Munoz,MT Martinez.Carbon nanotubes production by catalyticpyrolysis of benzene. Carbon . 1998 |
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