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Original Articles

Addition of the Peroxyl Radicals RO2 to C70, C60 Molecules — the Dominant Reaction Inhibition by Fullerenes of the Hydrocarbons Oxidation

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Pages 869-878 | Published online: 05 Nov 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Dim I. Galimov, Dilara R. Gazeeva, Denis Sh. Sabirov & Ramil G. Bulgakov. (2023) Estimation of the efficiency of the C60 and C70 fullerenes as inhibitors of the radical chain oxidation of сumene. Fullerenes, Nanotubes and Carbon Nanostructures 31:2, pages 176-181.
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Denis S H. Sabirov, Ralia R. Garipova & Ramil G. Bulgakov. (2015) What Fullerene Is More Reactive Toward Peroxyl Radicals? A Comparative DFT Study on ROO• Addition to C60 and C70 Fullerenes. Fullerenes, Nanotubes and Carbon Nanostructures 23:12, pages 1051-1057.
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Articles from other publishers (11)

A. A. Tukhbatullina & D. Sh. Sabirov. (2023) Reactions of fullerenols C60(OH)n (n = 2, 18, 24) with methyl and tert-butyl radicals: a computational thermochemistry study. Russian Chemical Bulletin 72:10, pages 2319-2329.
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Yang-Rong Yao, Olivia Fernandez-Delgado & Luis Echegoyen. 2021. Handbook of Carbon-Based Nanomaterials. Handbook of Carbon-Based Nanomaterials 19 158 .
A-Reza Nekoei & Sanaz Haghgoo. (2019) DFT investigation on some nitrogen-doped fullerenes with more antiradical and antioxidant activities than C60. Structural Chemistry 30:5, pages 1737-1748.
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L. R. Yakupova, I. M. Sakhautdinov, R. N. Malikova & R. L. Safiullin. (2019) Effect of Fullerene Containing a Maleopimarimide Substituent on the Kinetics of Liquid-Phase Radical Chain Oxidation of Ethylbenzene. Kinetics and Catalysis 60:1, pages 21-27.
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Denis Sh. Sabirov, Igor S. Shepelevich & Boris L. Tumanskii. (2018) Thermodynamic selectivity of multicenter chemical reactions. A statistical quantification of a widespread intuitive approach and its application to reactions of fullerenes. Computational and Theoretical Chemistry 1138, pages 84-90.
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Saori Yoshizawa, Shigeaki Abe, Mami Mutoh, Teruo Kusaka, Mariko Nakamura, Yasuhiro Yoshida, Junichiro Iida, Hiroshi Kawabata & Hiroto Tachikawa. (2016) Density functional theory study on oligosilane-functionalized C 60 fullerene . Japanese Journal of Applied Physics 56:1S, pages 01AE03.
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Hiroto Tachikawa & Hiroshi Kawabata. (2016) Electronic states of aryl radical functionalized graphenes: Density functional theory study. Japanese Journal of Applied Physics 55:6S1, pages 06GK05.
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Hiroto Tachikawa, Tetsuji Iyama & Hiroshi Kawabata. (2016) Electronic structures of hydrogen functionalized carbon nanotube: Density functional theory (DFT) study. Solid State Sciences 55, pages 138-143.
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Hiroto Tachikawa & Hiroshi Kawabata. (2015) Addition reaction of alkyl radical to C 60 fullerene: Density functional theory study . Japanese Journal of Applied Physics 55:2S, pages 02BB01.
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R G Bulgakov, D I Galimov & U M Dzhemilev. (2014) Synthesis, properties and transformations of fullerene peroxides. Russian Chemical Reviews 83:8, pages 677-717.
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Denis Sh. Sabirov, Ralia R. Garipova & Ramil G. Bulgakov. (2013) Density Functional Theory Study on the Decay of Fullerenyl Radicals RC 60 • , ROC 60 • , and ROOC 60 • (R = tert -Butyl and Cumyl) and Polarizability of the Formed Fullerene Dimers . The Journal of Physical Chemistry A 117:49, pages 13176-13183.
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