Development of a High-Performance Donor–Acceptor Conjugated Polymer: Synergy in Materials and Device Optimization
- Mei Gao
- Jegadesan Subbiah
- PGPaul B. Geraghty
- Ming Chen
- Balaji Purushothaman
- Xiwen Chen
- Tianshi Qin
- Doojin Vak
- Fiona H. Scholes
- Scott E. Watkins
- Melissa A. Skidmore
- Gerard J. Wilson
- Andrew B. Holmes
- David J. Jones
- Wallace W. H. Wong
- PGPaul B. Geraghty
Chemistry of Materials · 2016 · American Chemical Society
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Abstract
The development of a high-performance polymer PBDT-BT for bulk heterojunction solar cell devices is summarized. The polymer was first synthesized by Stille polycondensation, and solar cell devices in conventional geometry were optimized through the use of a lithium salt cathode interlayer reaching 6% power conversion efficiency. Improvements were made to the synthesis of the polymer using Suzuki polycondensation giving high-molecular-weight material in the M n = 100 kg/mol range. Further device optimization in inverted geometry gave power conversion efficiency of over 9%. The synthesis scalability as well as the batch-to-batch reproducibility of the polymer were extensively investigated.
