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Zhurnal Tekhnicheskoi Fiziki, 2018 Volume 88, Issue 7, Pages 1025–1031 (Mi jtf5864)

This article is cited in 2 papers

Physical science of materials

Structure and properties of self-organized 2$D$ and 3$D$ antimony/carbon composites

T. V. Kulikovaa, A. V. Tuchina, A. A. Averinb, D. A. Testova, L. A. Bityutskayaa, E. N. Bormontova

a Voronezh State University
b Institute of Physical Chemistry and Electro Chemistry, Russian Academy of Sciences, Moscow

Abstract: The conditions of synthesis of antimony/carbon composites by interlayer self-assembly from colloidal solutions and melts are discussed. The morphology and the structure of these composites are examined. The potential to produce composites of 2$D$ and 3$D$ morphologies is demonstrated. The 2$D$ composite has a multilayer graphene structure with submicron antimony inclusions, while the 3$D$ composite has a spheroidal shell structure with a deformed film-shell with carbon nanoinclusions. The difference in properties of these composites is demonstrated: the 2$D$ composite is conductive, while the 3$D$ composite has a nonlinear current–voltage characteristic that indicates the emergence of novel functional properties of the spheroidal antimony/carbon composite. A model of exfoliation of the layered precursor with covalent interlayer coupling is proposed. This model provides an explanation for the experimentally observed nonlinear hydrodynamic processes in the colloidal antimony solution.

Received: 21.09.2017
Revised: 18.12.2017

DOI: 10.21883/JTF.2018.07.46171.2488


 English version:
Technical Physics, 2018, 63:7, 995–1001

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