Growth of carbon nanotube arrays on various CtxMey alloy films by chemical vapour deposition method
Carbon nanotube (CNT) arrays were fabricated on Ct-Me-N-(O) alloys with content of Ct in the range of 6–40 at.% by chemical vapour deposition. The Ct was a catalytic metal from the group of the following elements: Ni, Co, Fe, Pd, while Me was a transition metal from the group of IV–VII of the period...
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Published in: | Journal of materials science & technology Vol. 34; no. 3; pp. 472 - 480 |
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01-03-2018
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Abstract | Carbon nanotube (CNT) arrays were fabricated on Ct-Me-N-(O) alloys with content of Ct in the range of 6–40 at.% by chemical vapour deposition. The Ct was a catalytic metal from the group of the following elements: Ni, Co, Fe, Pd, while Me was a transition metal from the group of IV–VII of the periodic table (where Me=Ti,V, Cr, Zr, Nb, Mo, Ta, W, Re). Carbon nanotubes were found to grow efficiently on the alloy surface with its composition containing Ti, V, Cr, Zr, Hf, Nb or Ta. The growth of CNTs was not observed when the alloy contained W or Re. Additions of oxygen and nitrogen in the alloy facilitated the formation of oxynitrides and catalyst extrusion on the alloy surface. Replacement of the metals in alloy composition affected the diameter of the resulting CNTs. The obtained results showed that the alloy films of varying thickness (10–500nm) may be used for the CNTs growth. The resulting CNT material was highly homogenous and its synthesis reproducible. |
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AbstractList | Carbon nanotube (CNT) arrays were fabricated on Ct-Me-N-(O) alloys with content of Ct in the range of 6–40 at.% by chemical vapour deposition. The Ct was a catalytic metal from the group of the following elements: Ni, Co, Fe, Pd, while Me was a transition metal from the group of IV–VII of the periodic table (where Me=Ti,V, Cr, Zr, Nb, Mo, Ta, W, Re). Carbon nanotubes were found to grow efficiently on the alloy surface with its composition containing Ti, V, Cr, Zr, Hf, Nb or Ta. The growth of CNTs was not observed when the alloy contained W or Re. Additions of oxygen and nitrogen in the alloy facilitated the formation of oxynitrides and catalyst extrusion on the alloy surface. Replacement of the metals in alloy composition affected the diameter of the resulting CNTs. The obtained results showed that the alloy films of varying thickness (10–500nm) may be used for the CNTs growth. The resulting CNT material was highly homogenous and its synthesis reproducible. |
Author | Gavrilov, Sergey A. Maniecki, Tomasz P. Gromov, Dmitry G. Skorik, Sergey N. Mierczynska, Agnieszka Dubkov, Sergey V. Mierczynski, Pawel Kitsyuk, Eugene P. Trifonov, Alexey Yu Pavlov, Alexander A. Bulyarskii, Sergey V. |
Author_xml | – sequence: 1 givenname: Pawel surname: Mierczynski fullname: Mierczynski, Pawel email: pawel.mierczynski@p.lodz.pl organization: Institute of General and Ecological Chemistry, Lodz University of Technology, Zeromskiego 116, Lodz 90-924, Poland – sequence: 2 givenname: Sergey V. surname: Dubkov fullname: Dubkov, Sergey V. organization: National Research University of Electronic Technology, Shokin Square, Zelenograd, Moscow 124498, Russia – sequence: 3 givenname: Sergey V. surname: Bulyarskii fullname: Bulyarskii, Sergey V. organization: Institute of Nanotechnology of Microelectronics of the RAS, INME, Moscow 119991, Russia – sequence: 4 givenname: Alexander A. surname: Pavlov fullname: Pavlov, Alexander A. organization: Institute of Nanotechnology of Microelectronics of the RAS, INME, Moscow 119991, Russia – sequence: 5 givenname: Sergey N. surname: Skorik fullname: Skorik, Sergey N. organization: Scientific-Manufacturing Complex “Technological Center”, Zelenograd, Moscow 124498, Russia – sequence: 6 givenname: Alexey Yu surname: Trifonov fullname: Trifonov, Alexey Yu organization: Scientific Research Institute of Physical Problems named after F.V. Lukin, Proezd 4806, 6, Zelenograd, Moscow 124460, Russia – sequence: 7 givenname: Agnieszka surname: Mierczynska fullname: Mierczynska, Agnieszka organization: The Australian Wine Research Institute, Waite Precinct, Hartley Grove cnr Paratoo Road, Urrbrae Adelaide, SA 5064, Australia – sequence: 8 givenname: Eugene P. surname: Kitsyuk fullname: Kitsyuk, Eugene P. organization: Scientific-Manufacturing Complex “Technological Center”, Zelenograd, Moscow 124498, Russia – sequence: 9 givenname: Sergey A. surname: Gavrilov fullname: Gavrilov, Sergey A. organization: Institute of Nanotechnology of Microelectronics of the RAS, INME, Moscow 119991, Russia – sequence: 10 givenname: Tomasz P. surname: Maniecki fullname: Maniecki, Tomasz P. organization: Institute of General and Ecological Chemistry, Lodz University of Technology, Zeromskiego 116, Lodz 90-924, Poland – sequence: 11 givenname: Dmitry G. surname: Gromov fullname: Gromov, Dmitry G. organization: National Research University of Electronic Technology, Shokin Square, Zelenograd, Moscow 124498, Russia |
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Snippet | Carbon nanotube (CNT) arrays were fabricated on Ct-Me-N-(O) alloys with content of Ct in the range of 6–40 at.% by chemical vapour deposition. The Ct was a... |
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SubjectTerms | Amorphous alloys Carbon nanotubes Catalytic processes Chemical vapour deposition Thin films |
Title | Growth of carbon nanotube arrays on various CtxMey alloy films by chemical vapour deposition method |
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