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The new composites,polyacetylene-carbon nanotubes: Electrochemical properties
Authors:L. I. Tkachenko  O. N. Efimov  I. V. Anoshkin  T. L. Kulova  O. S. Roshchupkina  Yu. M. Shul’ga  N. K. Petrova
Affiliation:(1) Institute of Problems in Chemical Physics, Russian Academy of Sciences, Chernogolovka, Moscow oblast’, 142432, Russia;(2) Mendeleev University of Chemical Technology, Miusskaya pl. 9, Moscow, 125190, Russia;(3) Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninskii pr. 31, Moscow, 119991, Russia
Abstract:Polyacetylene- and carbon-nanotube-based composite materials are prepared by the method of polymerization filling for the first time. It is shown that the acetylene polymerization mainly occurs at catalytic centers attached to the carbon nanotubes. It follows from TEM data that in the case of single-wall nanotubes the polyacetylene fibriles are wound up onto the nanotubes. In the case of multi-wall nanotubes, polyacetylene can form separate bodies that are connected to the multi-wall nanotubes. The specific electrochemical capacity of the novel composite materials is nearly twice as large as compared with that of the composite prepared by mechanical mixing; it is by two orders of magnitude larger than the pure polyacetylene capacity. The reversibility of the Li+ intercalation-deintercalation electrode reaction appears significantly improved at the polyacetylene-carbon nanotubes composites.
Keywords:polyacetylene  single-wall carbon nanotubes  multi-wall carbon nanotubes  direct polyacetylene polymerization at carbon nanotubes  nanocomposite materials  cyclic voltammetry  electrochemical intercalation-deintercalation of lithium cation
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