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Divanillin-Based Polyazomethines: Toward Biobased and Metal-Free ?-Conjugated Polymers.


ABSTRACT: Divanillin was synthesized in high yield and purity using Laccase from Trametes versicolor. It was then polymerized with benzene-1,4-diamine and 2,7-diaminocarbazole to form polyazomethines. Polymerizations were performed under microwave irradiation and without transition-metal-based catalysts. These biobased conjugated polyazomethines present a broad fluorescence spectrum ranging from 400 to 600 nm. Depending on the co-monomer used, polyazomethines with molar masses of around 10 kg·mol-1 and with electronic gaps ranging from 2.66 to 2.85 eV were obtained. Furthermore, time-dependent density functional theory (TD-DFT) calculations were performed to corroborate the experimental results.

SUBMITTER: Garbay G 

PROVIDER: S-EPMC7081409 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Divanillin-Based Polyazomethines: Toward Biobased and Metal-Free π-Conjugated Polymers.

Garbay Guillaume G   Giraud Lauriane L   Gali Sai Manoj SM   Hadziioannou Georges G   Grau Etienne E   Grelier Stéphane S   Cloutet Eric E   Cramail Henri H   Brochon Cyril C  

ACS omega 20200304 10


Divanillin was synthesized in high yield and purity using Laccase from <i>Trametes versicolor</i>. It was then polymerized with benzene-1,4-diamine and 2,7-diaminocarbazole to form polyazomethines. Polymerizations were performed under microwave irradiation and without transition-metal-based catalysts. These biobased conjugated polyazomethines present a broad fluorescence spectrum ranging from 400 to 600 nm. Depending on the co-monomer used, polyazomethines with molar masses of around 10 kg·mol<s  ...[more]

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