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A USEFUL MATERIAL AS AN ELECTRIC CONDUCTOR THAT INCLUDES POLYACETIENE OR SUBSTITUTED POLYACETIENEES INCORPORATED IN A MESOPOROUS SUPPORT, PROCEDURE FOR OBTAINING THE MATERIAL AND CONDUCTORS THAT UNDERSTAND THE MATERIAL.
A USEFUL MATERIAL AS AN ELECTRIC CONDUCTOR THAT INCLUDES POLYACETIENE OR SUBSTITUTED POLYACETIENEES INCORPORATED IN A MESOPOROUS SUPPORT, PROCEDURE FOR OBTAINING THE MATERIAL AND CONDUCTORS THAT UNDERSTAND THE MATERIAL.
A material useful as an electrical conductor comprising a conductive polymer incorporated into channels within a porous support, in which the polymer is polyacetylene or a polyacetylene derivative, in which the polymer is formed by polymerization of acetylenic monomer vapors, previously adsorbed in free channels of support structure directing agent that provide an encapsulation of the polymer that protects the polymer against environmental oxygen oxidation, the support being a modified mesoporous aluminosilicate having an average pore diameter between 2nm and 100nm, such as an aluminosilicate Hexagonal phase type MCM-41 or a cubic phase aluminosilicate type MCM-48. A process for the preparation of this material and conductive materials, for example battery electrodes and conductive surfaces, comprising these materials is also described.
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