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Updated: Jan 15, 2026

Morphology Control for Fully Printable Organic–Inorganic Bulk-heterojunction Solar Cells Based on a Ti-alkoxide and Semiconducting Polymer
Published on: January 10, 2017
Facile Access to IDT-Based Acceptor via Direct C-H Arylation and Its Exploration in Binary and Ternary Organic Solar
Yu-Long Peng1,2, Zhi-Yong Qiu1,3, Peng Liu1
1School of Chemistry and Chemical Engineering, Jiangxi University of Science and Technology, Ganzhou, China.
Abstract:
The pursuit of efficient and environmentally benign synthetic routes for electron acceptors via is vital to advancing the commercialization of organic solar cells (OSCs). In this study, we leverage a direct C-H arylation strategy to synthesis a novel A-D-π-D-A-type acceptor (D1), which offers significant advantages in step and atom economy, along with a reduced environmental impact compared to conventional cross-coupling methods. When combined with the polymer donor PM6, the optimized PM6:D1 binary devices attained a power conversion efficiency (PCE) of 9.85%. Furthermore, capitalizing on the well-aligned energy levels and complementary absorption with the benchmark blend PM6:Y6, D1 was successfully incorporated as a third component to fabricate ternary OSCs. The resulting PM6:Y6:D1 devices exhibited more balanced charge transport, enhanced exciton dissociation, and improved photovoltaic parameters, yielding a champion PCE of 16.58%. This work highlights the considerable potential of C-H arylation as a green synthesis method for constructing high-performance acceptors and offers key insights for designing efficient multi-component organic photovoltaic systems.
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