Диссертация (1090080), страница 26
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11351138.95. Li, Y. L. Synthesis of single-walled carbon nanotubes by a fluidized-bedmethod / Y. L. Li, I. A. Kinloch, M. Shaffer // Chem. Phys. Lett. - 2004. - V. 384. - P.98-102.96. Corrias, M. Carbon nanotubes produced by fluidized bed catalytic CVD: firstapproach of the process / M. Corrias, B. Caussat, A. Ayral // Chemical EngineeringScience. - 2003. - V. 58. - P.
4475-4482.97. Wang, Y. Agglomerated carbon nanotubes and its mass production in afluidized-bed reactor / Y. Wang, F. Wei, G. Gu // Physic. - 2003. - V.3 23. - P. 327-329.98. Venegoni, D. Parametric study for the growth of carbon nanotubes bycatalytic chemical vapor deposition in a fluidized bed reactor / D. Venegoni, Ph. Serp,R. Feurer // Carbon. - 2002. - V.40. - P.1799-1807.99. Weizhong, Q. Production of hydrogen and carbon nanotubes from methanedecomposition in a two-stage fluidized-bed reactor / Q.
Weizhong, L. Tang, W.Zhanwen // Applied Catalysis A: General. - 2004. - V. 260. - P. 223-228.100.Кувшинов, Д. Г. Разработка процесса каталитической переработкиуглеводородных газов с получением филаментарного углерода и водорода : дис.… канд. тех. наук : 05.17.07 / Кувшинов Дмитрий Генадьевич. - Уфа, 2000. – 211 с.101.Пешнев, Б. В.Технология получениявысокоадсорбционныхматериалов на основе углеродных нановолокон : дис. … докт.техн.
наук :02.00.13 / Пешнев Борис Владимирович. – М., 2007. – 288 с.102.Colomber, J. F. Large-scale synthesis of single-walled nanotubes bycatalytic chemical vapor deposition (CCVD) method / J. Colomber, C. Stephan, S.Lefrant, G. Van Tendeloo, I. Willems, Z. Kоnya, A. Fonseca, C.
Laurent, J. Nagy //Chem. Phys. Lett. - 2000. - V. 317. - P. 83.210103. Flahaut, E. Synthesis of single-walled carbon nanotubes using binary (Fe,Co, Ni) alloy nanoparticles prepared in situ by the reduction of oxide solid solutions / E.Flahaut, A. Govindaraj, A. Peigney, C. Laurent, A. Rousset, C. Rao // Chem. Phys. Lett.- 1999.
- V. 300. - P. 236-242.104. Laurent, C. Synthesis of carbon nanotube-Fe-Al2O3 nanocompositepowders by selective reduction of different Al1.8Fe0.2O3 solid solution / C. Laurent, E.Flahaut, A. Rousset // Mater. Chem. - 1998. - V. 8. - P. 1263.105. Li, Q. Effect of hydrocarbon precursor on the formation of carbonnanotubes in chemical vapor deposition / Q.
Li, H. Yan, G. Zhang, Z. Liu // Carbon. 2004. - V. 42. - P. 829.106. Bacsa, R. High specific surface area carbon nanotubes from catalyticchemical vapor deposition process / R. R. Bacsa, C. Laurent, A. Peigney, W. Bacsa, T.Vaugien, A. Rousset // Chem.
Phys. Lett. - 2000. - V. 323. - P. 566.107. Bacsa, R. Narrow diameter double-wall carbon nanotubes: synthesis,electron microscopy and inelastic light scattering / R. Bacsa, E. Flahaut, C. Laurent, A.Peigney, S. Alony, P. Puech, W. Bacsa // New J. Phys. - 2003. - V.
5. - P. 131.108. Flahaut, E. Synthesis of single-walled carbon nanotube-Co-MgO compositepowders and extraction of the nanotubes / E. Flahaut, A. Peigney, C. Laurent, A.Rousset // J. Mater. Chem. - 2000. - V. 10. - P. 249-252.109. Li, W. Z. Clean double-walled carbon nanotubes synthesis by CVD / W. Z.Li, J. B. Wen, M. Sennett, Z.F. Ren // Chem. Phys. Lett. - 2003.
- V. 368. - P. 299-306.110. Tang, S. Controlled growth of single-walled carbon nanotubes by catalyticdecomposition of CH4 over Mo/Co/MgO catalysts / S. Tang, Z. Zhong, Z. Xiong, L.Sun, L. Liu, J. Lin, Z. X. Shen, K. L. Tan // Chem. Phys. Lett. - 2001. - V. 350. - P. 1926.111. Geng, G. Synthesis of high purity single-walled carbon nanotubes in highyield / G. Singh, S. Stefard, M. Shaffer, B.
Johnson, A. Windle // Chem. Commun. 2002. – V.11. - P. 2666.211112. Flahaut, E. CCVD synthesis of carbon nanotubes from (Mg, Co, Mo)Ocatalysts: influence of proportions of cobalt and molybdenum / E. Flahaut, A. Peigney,W. Bacsa, R. Bacsa, C. Laurent // Mater. Chem. - 2004. - V.
14. - P. 646.113. Liu, B. S. Synthesis of single- and double-walled carbon nanotubes bycatalytic decomposition of methane / B. S. Liu, S. C. Lyu, T. J. Lee, S. K. Choi, S. J.Eum, C. W. Yang, C. Y. Park, C. J. Lee // Chem. Phys. Lett. - 2003. - V. 373. - P. 475.114. Perez-Mendoza M. Influence of molybdenum on the chemical vapourdeposition production of carbon nanotubes / M. Perez-Mendoza, C. Valles, W. Maser,M. Martinez, A. Benito // Nanotechnology.
- 2005. - V. 16. - P. 224.115. Su, M. A scalable CVD method for the synthesis of single-walled carbonnanotubes with high catalyst productivity / M. Su, B. Zheng, J. A. Liu // Chem. Phys.Lett. - 2000. - V. 322. - P. 321.116. Hiraoka, T. Selective synthesis of double-wall carbon nanotubes by CCVDof acetylene using zeolite supports / T. Hiraoka, T. Kawakubo, J. Kimura, R. Taniguchi,A.
Okamoto, T. Okazaki, T. Sugai, Y. Ozeki, M. Yoshikawa, H. Shinohara // Chem.Phys. Lett. - 2003. - V. 383. - P. 679.117. Bacsa, R. Solid-solution precursors for the large-scale synsethis of carbonnanotubes by catalytic chemical vapor deposition / R. Bacsa, C. Laurent, A. Peigney, T.Vaugien, E. Flahaut, W. Bacsa, A. Rousset // Am. Ceram. Soc. - 2002. - V. 85. - P.2666-2669.118.
Herrera, J. E. Relationship between the structure/composition of Co-Mocatalysts and their ability to produce single-walled carbon nanotubes by COdisproportionation / J. E. Herrera, L. Balzano, A. Borgna, W. E. Alwarez, D. E. Resasco// J. Catal. - 2001. - V. 204. - P. 129.119. Herrera, J. E. Role of Co-W interaction in the Selective growth of singlewalled carbon nanotubes from CO disproportionation / J. E. Herrera, D. E. Resasco // J.Phys.
Chem. - 2003. - V. 107. - P. 3738.120. Liu, B. S. Catalytic grogh of single-walled carbon nanotubes with a narrowdistribution of diameter over Fe nanoparticles prepared in situ by reduction of LaFe2O3/ B. S. Liu, S. H. Tang, Z. L. Yu // Chem. Phys. Lett. - 2002. - V. 357. - P. 297-300.212121. Liang, Q. Carbon nanotube growth on Ni-particles prepared in situ byreduction of La2NiO4 / Q.
Liang, L. Z. Gao, Q. Li, S. H. Tang, B. S. Liu, Z. L. Yu //Carbon. - 2001. - V.39. - P. 897-903.122. Хэтрик, П. Н. Кинетические особенности науглероживания железногокатализатора в токе окиси углерода / П. Н. Хэтрик, Г. Г. Герман, Н.Ф. Колесник //Черная металлургия. - 1976. - №1. - C. 14-17.123. Planeix,J.M.Application of carbonnanotubesassupportsinheterogeneous catalysisм / J. M. Planeix, N. Coustel, В. Coq, V. Brotons, P. S.Kumbhar, R. Dutartre, P. Geneste, P.
Bernier, P. M. Ajayan // J. Amer. Chem. Soc.1994. – V. 116. – P. 7935–7936.124. Чесноков, В. В. Формирование морфологических структур углеродаиз углеводородов на никель содержащих катализаторах / В. В. Чесноков, В. И.Банковский, Р. А. Буянов // Кинетика и катализ.
- 1994. - №1. - C. 146-151.125. Розовский, А. Я. Кинетика топохимических реакций / А. Я. Розовский.– М. : Химия, 1974. – 224 с.126. Yang, R. T. Evidence for temperature-driven on catalysts / R. T. Yang // J.Catal. - 1985. - №1. - P. 135-139.127.
Французов, В. К. Синтезмикроуглеродныхволокон / В. К.Французов, Б. В. Пешнев. – М. : МИТХТ, 1996. – 26 с.128. Rostrum-Nielsen J. Mechanisms of carbon formation on nickel-containingcatalysts / J. Rostrum-Nielsen, D. L. Trimm // J. Catal. - 1977. - V. 48. - P. 155-165.129. Fenelonov, V. B. The formation of carbon nanotubes / V. B. Fenelonov, V.A. Likholobov, A. Y. Derevyankin // Catalysis Today. - 1998. - V. 42.
- P. 341130. Rostrum-Nielsen J. Mechanisms of carbon formation on nickel-containingcatalysts / J. Rostrum-Nielsen, D. L. Trimm // J. Catal. - 1977. - V. 48. - P. 155-165.131. Fenelonov, V. B. The formation of carbon nanotubes / V. B. Fenelonov, V.A. Likholobov, A. Y. Derevyankin // Catalysis Today. - 1998.
- V. 42. - P. 341.132. Baird Т. Carbon formation on iron and nickel foils by hydrocarbonpyrolysis - reactions at 700° / Т. Baird, J. R. Eryer // Carbon. - 1974. -V. 14. - P. 591602.213133. Watson J. H. The growth and properties of cupren fiber / J. H. Watson, A.E. Leger, C. J. Onelent // Phys. Colloid. Chem. - 1950. - V. 54. - P. 969-979.134. Пешнев, Б. В. Механизм формирования углеродных нановолокондиспропорционированием СО / Б.