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Wide bandgap OPV polymers based on pyridinonedithiophene unit with efficiency >5%†
Alexander M. Schneider,Luyao Lu,Tianyue Zheng,Valerii Sharapov,Tao Xu,Tobin J. Marks,Luping Yu
Chemical Science Pub Date : 06/04/2015 00:00:00 , DOI:10.1039/C5SC01427A
Abstract

We report the properties of a new series of wide band gap photovoltaic polymers based on the N-alkyl 2-pyridone dithiophene (PDT) unit. These polymers are effective bulk heterojunction solar cell materials when blended with phenyl-C71-butyric acid methyl ester (PC71BM). They achieve power conversion efficiencies (up to 5.33%) high for polymers having such large bandgaps, ca. 2.0 eV (optical) and 2.5 eV (electrochemical). Grazing incidence wide-angle X-ray scattering (GIWAXS) reveals strong correlations between π–π stacking distance and regularity, polymer backbone planarity, optical absorption maximum energy, and photovoltaic efficiency.

Graphical abstract: Wide bandgap OPV polymers based on pyridinonedithiophene unit with efficiency >5%
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