Issue 9, 1995

Electrochemical route to xylylene polymers and copolymers via cathodically generated quinodimethanes: preparative and structural aspects

Abstract

Electrochemical reductive elimination of bis(α-bromoalkyl)arenes gives quinodimethane intermediates that polymerize, mostly in high yield, to linear polymers of the poly(p-xylylene) type. At a stirred mercury cathode reaction proceeds to completion and the polymers precipitate. A considerable variety of structural variation in the precursors is tolerated. Co-electrolysis of different precursors gives copolymers. In some cases organo-sole fractions are formed. Key structural features of the polymers and copolymers are obtained by NMR spectroscopy [1H and 13C (solution and solid-state)] and by direct pyrolysis mass spectrometry. The high reactivity of the p-quinodimethanes is evident from the observed random polymerization and co-polymerization.

Article information

Article type
Paper

J. Mater. Chem., 1995,5, 1297-1308

Electrochemical route to xylylene polymers and copolymers via cathodically generated quinodimethanes: preparative and structural aspects

J. H. P. Utley, Y. Gao, J. Gruber and R. Lines, J. Mater. Chem., 1995, 5, 1297 DOI: 10.1039/JM9950501297

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