Rational monomer design for the synthesis of conjugated polymers by direct heteroarylation polymerization

TitleRational monomer design for the synthesis of conjugated polymers by direct heteroarylation polymerization
Publication TypeJournal Article
Year of Publication2024
AuthorsKakde, NR, Sharma, H, Dalvi, NV, Vanka, K, Asha, SK
JournalACS Polymers Au
Volume4
Issue5
Pagination449–459
Date PublishedJUL
Type of ArticleArticle
Abstract

This study focuses on the design concepts that contribute to the C–H activation in bithiophene-flanked monomers incorporating naphthalene diimide (NDI), perylene diimide (PDI), and fluorene (FLU) and their polymerization by direct heteroarylation. Density functional theory (DFT) calculations reveal distinct energy requirements for C–H bond abstraction, which is dictated by the electron-withdrawing strength of the central aromatic core flanked by bithiophene. These provide insights into the reactivity of each monomer for C–H bond activation. Proton NMR spectroscopic experimental results confirm the favorable energetic profiles predicted by DFT, with NDI- and PDI-flanked monomers exhibiting lower energy requirements than fluorene-flanked monomers. Successful polymer synthesis is demonstrated for NDI and PDI, while the fluorene-flanked monomer shows challenges due to its higher energy demands.

DOI10.1021/acspolymersau.4c00050
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

4.8

Divison category: 
Physical and Materials Chemistry
Polymer Science & Engineering
Database: 
Web of Science (WoS)

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