Hsiow Chuen-Yo, Wang Han-Ying, Lin Yu-Hsiang, Raja Rathinam, Rwei Syang-Peng, Chiu Wen-Yen, Dai Chi-An, Wang Leeyih
Center for Condensed Matter Sciences, National Taiwan University, Taipei 10617, Taiwan.
Joint Center for Artificial Photosynthesis, California Institute of Technology, Pasadena, CA 91125, USA.
Polymers (Basel). 2016 Oct 27;8(11):382. doi: 10.3390/polym8110382.
A series of novel p-type conjugated copolymers, PTTVBDT, PTTVBDT-TPD, and PTTVBDT-DPP, cooperating benzo[1,2-b:4,5-b']dithiophene (BDT) and terthiophene-vinylene (TTV) units with/without thieno[3,4-]pyrrole-4,6-dione (TPD) or pyrrolo[3,4-]pyrrole-1,4-dione (DPP) via Stille polymerization were synthesized and characterized. Copolymer PTTVBDT shows a low-lying HOMO energy level and ordered molecular-packing behavior. Furthermore, two terpolymers, PTTVBDT-TPD and PTTVBDT-DPP, display stronger absorption ability, alower-lying HOMO energy level, and preferred molecular orientation, due to the replacement TTV-monomer units with electron-deficient groups. Furthermore, bulk-heterojunction organic solar cells were fabricated using blends of the PTTVBDT-TPD, and PCBM gave the best power conversion efficiency of 5.01% under the illumination of AM 1.5G, 100 mW·cm; the short circuit current () was 11.65 mA·cm which displayed a 43.8% improvement in comparison with the PTTVBDT/PCBM device. These results demonstrate a valid strategy combining the two-dimensional molecular structure with random copolymerization strikes promising conjugated polymers to achieve highly efficient organic photovoltaics.
通过Stille聚合反应合成并表征了一系列新型p型共轭共聚物,即PTTVBDT、PTTVBDT - TPD和PTTVBDT - DPP,它们将苯并[1,2 - b:4,5 - b']二噻吩(BDT)和噻吩并[3,4 - ]吡咯 - 4,6 - 二酮(TPD)或吡咯并[3,4 - ]吡咯 - 1,4 - 二酮(DPP)与/不与三联噻吩 - 亚乙烯基(TTV)单元相结合。共聚物PTTVBDT显示出较低的最高占据分子轨道(HOMO)能级和有序的分子堆积行为。此外,由于用缺电子基团取代了TTV单体单元,两种三元共聚物PTTVBDT - TPD和PTTVBDT - DPP表现出更强的吸收能力、更低的HOMO能级和更优的分子取向。此外,使用PTTVBDT - TPD与富勒烯衍生物(PCBM)的混合物制备了本体异质结有机太阳能电池,在AM 1.5G、100 mW·cm²光照条件下,其功率转换效率最高可达5.01%;短路电流()为11.65 mA·cm²,与PTTVBDT/PCBM器件相比提高了43.8%。这些结果表明,将二维分子结构与无规共聚相结合的有效策略能够开发出有前景的共轭聚合物,以实现高效有机光伏。