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Ionic Push-Pull Polythiophenes: A Further Step towards Eco-Friendly BHJ Organic Solar Cells.


ABSTRACT: Four new conjugated polymers alternating benzothiadiazole units and thiophene moieties functionalized with ionic phosphonium or sulfonic acid salts in the side chains were synthesized by a postfunctionalization approach of polymeric precursors. The introduction of ionic groups makes the conjugated polymers soluble in water and/or polar solvents, allowing for the fabrication of bulk heterojunction (BHJ) solar cells using environmentally friendly conditions. All polymers were fully characterized by spectroscopic, thermal, electrochemical, X-ray diffraction, scanning electron, and atomic force techniques. BHJ solar cells were obtained from halogen-free solvents (i.e., ethanol and/or anisole) by blending the synthesized ionic push-pull polymers with a serinol-fullerene derivative or an ionic homopolymer acting as electron-acceptor (EA) or electron-donor (ED) counterparts, respectively. The device with the highest optical density and the smoothest surface of the active layer was the best-performing, showing a 4.76% photoconversion efficiency.

SUBMITTER: Marinelli M 

PROVIDER: S-EPMC9573585 | biostudies-literature | 2022 Sep

REPOSITORIES: biostudies-literature

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Ionic Push-Pull Polythiophenes: A Further Step towards Eco-Friendly BHJ Organic Solar Cells.

Marinelli Martina M   Lanzi Massimiliano M   Pierini Filippo F   Ziai Yasamin Y   Zanelli Alberto A   Quadretti Debora D   Di Maria Francesca F   Salatelli Elisabetta E  

Polymers 20220922 19


Four new conjugated polymers alternating benzothiadiazole units and thiophene moieties functionalized with ionic phosphonium or sulfonic acid salts in the side chains were synthesized by a postfunctionalization approach of polymeric precursors. The introduction of ionic groups makes the conjugated polymers soluble in water and/or polar solvents, allowing for the fabrication of bulk heterojunction (BHJ) solar cells using environmentally friendly conditions. All polymers were fully characterized b  ...[more]

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