A Carbonylated Terthiophene-Based Twisted Polymer for Efficient Ternary Polymer Solar Cells.

Macromol Rapid Commun

Beijing National Laboratory for Molecular Sciences, State Key Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.

Published: October 2019

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Article Abstract

In polymer solar cells (PSCs), it is difficult for twisted conjugated polymers to achieve high power-conversion efficiency (PCE) as donors due to their low charge carrier mobilities and poor bulk heterojunction morphologies. In this work, a new twisted conjugated polymer (P3TCO-1) with excellent solubilities (above 30 mg mL ) in common organic solvents at room temperature is reported. UV-visible absorption spectra and cyclic voltammetry indicate that P3TCO-1 has a wide optical bandgap of 1.90 eV and deep HOMO level of -5.39 eV. In binary PSCs, P3TCO-1:ITIC-based device shows a PCE of 10.11%, with J of 17.05 mA cm and FF of 62.89%; P3TCO-1:PC BM-based device gives a PCE of 6.67% with J of 12.31 mA cm and FF of 58.00%. When the two acceptors of ITIC and PC BM are combined, the twisted P3TCO-1-based ternary PSCs exhibit a significantly boosted PCE of up to 11.41%, with a simultaneously improved J of 18.16 mA cm and FF of 66.78%. These results can guide the improvement of PCE for twisted conjugated polymer-based PSCs.

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http://dx.doi.org/10.1002/marc.201900246DOI Listing

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