Gao Chen, Jiang Pei, Shi Keli, Ma Di, Li Yongfang, Yu Gui, Li Xiaoyu, Wang Haiqiao
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, China.
Key Laboratory of Carbon Fiber and Functional Polymers of Ministry of Education, Beijing University of Chemical Technology, Beijing, 100029, China.
Chem Asian J. 2016 Mar 4;11(5):766-74. doi: 10.1002/asia.201501271. Epub 2016 Jan 28.
Hexa-peri-hexabenzocoronene (HBC) is a discotic-shaped conjugated molecule with strong π-π stacking property, high intrinsic charge mobility, and good self-assembly properties. For a long time, however, organic photovoltaic (OPV) solar cells based on HBC demonstrated low power conversion efficiencies (PCEs). In this study, two conjugated terpolymers, poly[N-9'-heptadecanyl-2,7-carbazole-alt-5,5'-(4',7'-di-2-thienyl-2',1',3'-benzothiadiazole)] (PCDTBT)-5 HBC and PCDTBT-10 HBC, were synthesized by incorporating different amounts of HBC as the third component into poly[N-9'-heptadecanyl-2,7-carbazole-alt-5,5'-(4',7'-di-2-thienyl-2',1',3'-benzothiadiazole)] (PCDTBT) through Suzuki coupling polymerization. For comparison, the donor-acceptor (D-A) conjugated dipolymer PCDTBT was also synthesized to investigate the effect of HBC units on conjugated polymers. The HBC-containing polymers exhibited higher thermal stabilities, broader absorption spectra, and lower highest-occupied molecular orbital (HOMO) energy levels. In particular, the field-effect mobilities were enhanced by more than one order of magnitude after the incorporation of HBC into the conjugated polymer backbone on account of increased interchain π-π stacking interactions. The bulk heterojunction (BHJ) polymer solar cells (PSCs) fabricated with the polymers as donor and PC71 BM as acceptor demonstrated gradual improvement of open-circuit voltage (VOC ) and short-circuit current (JSC ) with the increase in HBC content. As a result, the PCEs were improved from 3.21 % for PCDTBT to 3.78 % for PCDTBT-5 HBC and then to 4.20 % for PCDTBT-10 HBC.
六苯并蔻(HBC)是一种具有盘状结构的共轭分子,具有很强的π-π堆积特性、较高的本征电荷迁移率和良好的自组装性能。然而,长期以来,基于HBC的有机光伏(OPV)太阳能电池的功率转换效率(PCE)一直较低。在本研究中,通过铃木偶联聚合反应,将不同量的HBC作为第三组分引入聚[N-9'-十七烷基-2,7-咔唑-alt-5,5'-(4',7'-二-2-噻吩基-2',1',3'-苯并噻二唑)](PCDTBT)中,合成了两种共轭三元共聚物,即PCDTBT-5HBC和PCDTBT-10HBC。为了进行比较,还合成了供体-受体(D-A)共轭二聚物PCDTBT,以研究HBC单元对共轭聚合物的影响。含HBC的聚合物表现出更高的热稳定性、更宽的吸收光谱和更低的最高占据分子轨道(HOMO)能级。特别是,由于链间π-π堆积相互作用的增加,将HBC引入共轭聚合物主链后,场效应迁移率提高了一个多数量级。以这些聚合物为供体、PC71BM为受体制备的本体异质结(BHJ)聚合物太阳能电池(PSC)表明,随着HBC含量的增加,开路电压(VOC)和短路电流(JSC)逐渐提高。结果,PCE从PCDTBT的3.21%提高到PCDTBT-5HBC的3.78%,然后提高到PCDTBT-10HBC的4.20%。