Synthesis of novel poly[(2,5-dimethoxy-p-phenylene)vinylene] precursors having two eliminatable groups: an approach for the control of conjugation length

Gowri, R. ; Mandal, Debabrata ; Shivkumar, B. ; Ramakrishnan, S. (1998) Synthesis of novel poly[(2,5-dimethoxy-p-phenylene)vinylene] precursors having two eliminatable groups: an approach for the control of conjugation length Macromolecules, 31 (6). pp. 1819-1826. ISSN 0024-9297

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Official URL: http://pubs.acs.org/doi/abs/10.1021/ma971324j

Related URL: http://dx.doi.org/10.1021/ma971324j

Abstract

Poly[(2,5-dimethoxy-p-phenylene)vinylene] (DMPPV) of varying conjugation length was synthesized by selective elimination of organic soluble precursor polymers that contained two eliminatable groups, namely, methoxy and acetate groups. These precursor copolymers were in turn synthesized by competitive nucleophilic substitution of the sulfonium polyelectrolyte precursor (generated by the standard Wessling route) using methanol and sodium acetate in acetic acid. The composition of the precursor copolymer, in terms of the relative amounts of methoxy and acetate groups, was controlled by varying the composition of the reaction mixture during nucleophilic substitution. Thermal elimination of these precursor copolymers at 250 °C, yielded partially conjugated polymers, whose color varied from light yellow to deep red. FT-IR studies confirmed that, while essentially all the acetate groups were eliminated, the methoxy groups were intact and caused the interruption in conjugation. Preliminary photoluminescence studies of the partially eliminated DMPPV samples showed a gradual shift in the emission maximum from 498 to 598 nm with increasing conjugation lengths, suggesting that the color of LED devices fabricated from such polymers can, in principle, be fine-tuned.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:67247
Deposited On:29 Oct 2011 12:03
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