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Spectroscopy Letters
An International Journal for Rapid Communication
Volume 29, 1996 - Issue 7
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Original Articles

Spectroscopic Study of C2 in Carbon Arc Discharge

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Pages 1215-1228 | Received 21 Feb 1996, Accepted 22 Apr 1996, Published online: 22 Aug 2006

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Read on this site (4)

Zaide Zhou, Kaizhong Zhou, Xiandeng Hou & Hong Luo. (2005) Arc/Spark Optical Emission Spectrometry: Principles, Instrumentation, and Recent Applications. Applied Spectroscopy Reviews 40:2, pages 165-185.
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Andrzej Graja. (2000) Fullerene Research in Poland. Fullerene Science and Technology 8:3, pages 187-223.
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H. Lange. (1997) Spectral Diagnostics of Helium-Carbon Arc Plasma During Carbon Nanostructure Formation. Fullerene Science and Technology 5:6, pages 1177-1201.
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A. Huczko. (1997) Heterohedral Fullerenes and Nanotubes: Formation and Characteristics. Fullerene Science and Technology 5:6, pages 1091-1131.
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Articles from other publishers (13)

Syed Muhammad Zain Mehdi, Tae Hun Shin, Sayed Zafar Abbas, Hyeokjun Kwon, Yongho Seo, Donghwan Kim, Sang Jeen Hong, Jeung Choon Goak & Naesung Lee. (2023) Superior field emission characteristics of highly crystalline and thermally stable carbon nanotubes grown in N2 and O2 by arc discharge. Ceramics International 49:3, pages 4668-4676.
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Michał Soszyński & Andrzej Huczko. 2016. Carbon Nanomaterials Sourcebook. Carbon Nanomaterials Sourcebook 159 186 .
Roderick M. Macrae. (2016) Puzzles in Bonding and Spectroscopy: The Case of Dicarbon † . Science Progress 99:1, pages 1-58.
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P J Bruggeman, N Sadeghi, D C Schram & V Linss. (2014) Gas temperature determination from rotational lines in non-equilibrium plasmas: a review. Plasma Sources Science and Technology 23:2, pages 023001.
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Andrzej Huczko, Magdalena Kurcz & Magdalena PopławskaMagdalena Kurcz & Andrzej Huczko. 2014. Nanorurki węglowe. Otrzymywanie, charakterystyka, zastosowania. Nanorurki węglowe. Otrzymywanie, charakterystyka, zastosowania.
Andrzej Huczko, Michał Bystrzejewski, Hubert Lange & Piotr Baranowski. 2011. Physical Properties of Ceramic and Carbon Nanoscale Structures. Physical Properties of Ceramic and Carbon Nanoscale Structures 1 43 .
A Mansour, M Razafinimanana & M Monthioux. (2009) Influence of the anode filling carbon granulometry on plasma features in the electric arc process applied to carbon nanotubes synthesis. Journal of Physics D: Applied Physics 42:19, pages 195203.
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Norberto Castillo, Katherine N. Robertson, S. C. Choi, Russell J. Boyd & Osvald Knop. (2007) Bond length and the electron density at the bond critical point: XX, ZZ, and CZ bonds (X = Li‐F, Z = Na‐Cl). Journal of Computational Chemistry 29:3, pages 367-379.
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S. Brugeat & H. Coitout. (2004) Effects of CO 2 molecules upon and argon thermal plasma . The European Physical Journal Applied Physics 28:2, pages 187-195.
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K Saïdane, M Razafinimanana, H Lange, A Huczko, M Baltas, A Gleizes & J-L Meunier. (2004) Fullerene synthesis in the graphite electrode arc process: local plasma characteristics and correlation with yield. Journal of Physics D: Applied Physics 37:2, pages 232-239.
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H Lange, K Saidane, M Razafinimanana & A Gleizes. (1999) Temperatures and C 2 column densities in a carbon arc plasma . Journal of Physics D: Applied Physics 32:9, pages 1024-1030.
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H Lange, A Huczko, P Byszewski, E Mizera & H Shinohara. (1998) Influence of boron on carbon arc plasma and formation of fullerenes and nanotubes. Chemical Physics Letters 289:1-2, pages 174-180.
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Andrzej Huczko, Hubert Lange, Przemyslaw Byszewski, Magdalena Poplawska & Andrzej Starski. (1997) Fullerene Formation in Carbon Arc:  Electrode Gap Dependence and Plasma Spectroscopy. The Journal of Physical Chemistry A 101:7, pages 1267-1269.
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