Publications by the Canatu team
Nasibulin, A. G., S. D. Shandakov, A. S. Anisimov, D. Gonzalez, H. Jiang, M. Pudas, P. Queipo and E. I. Kauppinen (2008)Charging of Aerosol Products during Ferrocene Vapor Decomposition in N2 and CO Atmospheres. Journal of Physical Chemistry. accepted February, 2007
Queipo, P., Nasibulin, A. G., Shandakov, S. D., Jiang, H., Gonzalez, D., Kauppinen, E. I. (2007) CVD synthesis and radial deformations of large diameter single-walled CNTs. Submitted to Current Applied Physics. July, 2007.
Nasibulin, A. G., A. Ollikainen, A. S. Anisimov, D. P. Brown, P. V. Pikhitsa, S. Holopainen, J. S. Penttilä, P. Helistö, J. Ruokolainen, M. Choi, E. I. Kauppinen (2008) Integration of single-walled carbon nanotubes into polymer films by thermo-compression, Chemical Engineering Journal, 136(2-3), 409-413.
Brown, D. P., A. G. Nasibulin, and E. I. Kauppinen (2007) Effects of Wall Composition and Inlet Conditions on Carbon Nanotube Catalyst Particle Activity. Journal of Nanoscience and Nanotechnology. accepted.
Nasibulin, A. G., A. S. Anisimov, P. V. Pikhitsa, H. Jiang, D. P. Brown, M. Choi, and E. I. Kauppinen, Investigations of NanoBud formation. Chemical Physics Letters, 446 (2007) 109–114.
Wu, F., P. Queipo, A. Nasibulin, T. Tsuneta, T. H. Wang, E. Kauppinen, and P. J. Hakonen, (2007) Shot Noise with Interaction Effects in Single-Walled Carbon Nanotubes. PRL 99, 156803.
Zavodchikova, M. Y., A. Johansson, M. Rinkiő, J. J. Toppari, A. G. Nasibulin, E. I. Kauppinen, and P. Tőrmä (2007) Fabrication of carbon nanotube-based field-effect transistors for studies of their memory effects. Phys. Stat. Sol. b 244(11), 4188-4192.
Kurppa, K., Jiang, H., Szilvay, G. R., Nasibulin, A. G., Kauppinen,
Nasibulin, A. G., P. V. Pikhitsa, P. Queipo, M. Choi, E. I. Kauppinen. (2006) Investigations of mechanism of carbon nanotube growth. Phys. Stat. Sol., 243(13), 3095-3100
Nasibulin, A. G., D. P. Brown, P. Queipo, D. Gonzalez, H. Jiang, A. S. Anisimov, E. I. Kauppinen (2006) Effect of CO2 and H2O on the synthesis of single-walled CNTs. Phys. Stat. Sol., 243(13), 3087-3090.
Nasibulin, A. G., A. Moisala, H. Jiang, E. I. Kauppinen, (2006) Carbon nanotube synthesis from alcohols by a novel aerosol method. Journal of Nanoparticle Research, 8(3-4) 465-475.
Gonzalez, D., A. G. Nasibulin, S. D. Shandakov, H. Jiang, P. Queipo, and E. I. Kauppinen. Spontaneous charging of single-walled carbon nanotubes in gas phase.Carbon, 44, 2099-2101.
Nasibulin, A. G., Queipo, P., Shandakov, S. D., Brown, D. P., Jiang, H., Pikhitsa, P. V., Tolochko, O. V., and Kauppinen, E. I. Studies on mechanism of single-walled carbon nanotube formation. Journal of Nanoscience and Nanotechnology, 6(5), 1233-1246.
Queipo, P., A. G. Nasibulin, D. Gonzalez, U. Tapper, H. Jiang, T. Tsuneta, K. Grigoras, J. A. Duenas, and E. I. Kauppinen, (2006) Novel catalyst particle production method for
Moisala, A., Nasibulin, A. G., Brown, D. P., Jiang, H., Khriachtchev, L. and Kauppinen, E. I., (2006) Single-walled carbon nanotube synthesis using ferrocene and iron pentacarbonyl in a laminar flow reactor. Chemical Engineering Science, 61, 4393-4402.
Gonzalez, D., Nasibulin, A. G., Baklanov, A. M., Shandakov, S D., Queipo, P., Brown, D. P., and Kauppinen, E. I. (2005) A new thermophoretic precipitator for collection of nanometer-sized aerosol particles. Aerosol Science and Technology, V. 39(11), 1064-1071.
Moisala A., Nasibulin A.G., Shandakov S.D., Jiang H. and Kauppinen E.I. (2005) On-line detection of single-walled carbon nanotube formation during aerosol synthesis method. Carbon 43, 2066-2074.
Nasibulin, A. G., P. V. Pikhitsa, H. Jiang, E. I. Kauppinen (2005), Correlation between catalyst particle and single-walled carbon nanotube diameters. Carbon. 43(11), 2251-2257.
Nasibulin, A. G., Altman, I. S., Kauppinen, E. I. (2003) Semiempirical Dynamic Phase Diagrams of Crystalline Products During Copper (II) Acetylacetonate Decomposition. Chemical Physics Letters, 367, 771-777.
Nasibulin, A. G., Moisala, A., Brown, D. P., Kauppinen, E. I. (2003) Carbon nanotubes and onions from carbon monoxide using Ni(acac)2 and Cu(acac)2 as catalyst precursors. Carbon. 41(14) 2711-2724.