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?-Strand inspired bifacial ?-conjugated polymers.


ABSTRACT: Access to diverse, relatively high molecular weight soluble linear polymers without pendant solubilizing chains is the key to solution state synthesis of structurally diverse nanoribbons of conjugated materials. However, realizing soluble 1D-?-conjugated polymers without pendant solubilizing chains is a daunting task. Herein, inspired from the polypeptide ?-strand architecture, we have designed and developed novel bifacial ?-conjugated polymers (M n: ca. 24 kDa) that are soluble (ca. 70 to >250 mM) despite the absence of pendant solubilizing chains. The impact of varying the bifacial monomer height on polymer solubility, optical properties, and interactions with small molecules is reported.

SUBMITTER: Chaudhuri S 

PROVIDER: S-EPMC6566302 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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β-Strand inspired bifacial π-conjugated polymers.

Chaudhuri Saikat S   Mohanan Manikandan M   Willems Andreas V AV   Bertke Jeffery A JA   Gavvalapalli Nagarjuna N  

Chemical science 20190509 23


Access to diverse, relatively high molecular weight soluble linear polymers without pendant solubilizing chains is the key to solution state synthesis of structurally diverse nanoribbons of conjugated materials. However, realizing soluble 1D-π-conjugated polymers without pendant solubilizing chains is a daunting task. Herein, inspired from the polypeptide β-strand architecture, we have designed and developed novel bifacial π-conjugated polymers (<i>M</i> <sub>n</sub>: <i>ca.</i> 24 kDa) that are  ...[more]

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