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JOURNALS // Nanosystems: Physics, Chemistry, Mathematics // Archive

Nanosystems: Physics, Chemistry, Mathematics, 2016 Volume 7, Issue 1, Pages 234–243 (Mi nano198)

This article is cited in 4 papers

PAPERS, PRESENTED AT THE CONFERENCE

Reactivity in combustion process for expanded graphites: influence of dimensional effect

V. A. Logvinenkoab, V. G. Makotchenkoa, V. E. Fedorovab

a Nikolaev Institute of Inorganic Chemistry, Siberian Branch of the Russian Academy of Sciences, Novosibirsk 630090, Russia
b Novosibirsk State University, Novosibirsk 630090, Russia

Abstract: Thermal stability in combustion reaction for natural graphite, graphene and several expanded graphite phases were studied; the kinetic parameters of the oxidation reaction were calculated for two samples. Natural graphite (crystalline particles $200$$300\mu$m) has the maximum stability ($E_1=201\pm2$ kJ/mol, $\lg A_1=7.1\pm0.1$), while multilayer graphene is the most reactive ($E_2=120\pm1$ kJ mol$^{-1}$, $\lg A_2=4.3\pm0.10$). The different sample grain sizes and their different structures result in different thermal stabilities: both in the reaction zones location (i.e. in the topochemical equation forms), and in the kinetic parameters' values.

Keywords: natural graphite, graphene, expanded graphite, thermal stability, non-isothermal kinetics, combustion.

PACS: 65.80.Ck; 65.80g; 82.60.Qr

Received: 20.11.2015

Language: English

DOI: 10.17586/2220-8054-2016-7-1-234-243



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