Electrical Conductivity of a Carbon Reinforced Alumina Resistive Composite Material Based on Synthetic Graphite and Graphene


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We have prepared samples of carbon reinforced alumina ceramics with different volume fractions of synthetic graphite (0–20%) and graphene (0–4%) and measured their electrical conductivity. It has been shown that increasing the volume percent of the conductive component increases the electrical conductivity of the samples from 10–8 to 2 × 10–3 S/cm. The results have been analyzed in terms of percolation theory and tunneling conduction theory. The synthetic graphite-based samples show linear current–voltage behavior and their electrical conductivity increases by a factor of 1.4 to 2.8 in the temperature range 300–550 K, with a sharp rise above 550 K. The temperature dependences of their electrical conductivity are analyzed in terms of hopping transport and thermally induced tunneling conduction mechanisms. The conclusion is made that the conduction mechanism in the corundum–carbon ceramics differs significantly from that in polymer composite materials.

作者简介

V. Samoilov

State Research Institute of Structural Graphite Materials

编辑信件的主要联系方式.
Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

E. Danilov

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

A. Nikolaeva

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

D. Ponomareva

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

I. Porodzinskii

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

E. Razyapov

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

I. Sharonov

State Research Institute of Structural Graphite Materials

Email: vsamoylov@niigrafit.org
俄罗斯联邦, Elektrodnaya ul. 2, Moscow, 111524

N. Yashtulov

Moscow Technological University

Email: vsamoylov@niigrafit.org
俄罗斯联邦, pr. Vernadskogo 78, Moscow, 119454

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