Ren Shiwei, Wang Zhuoer, Chen Jinyang, Wang Sichun, Yi Zhengran
Zhuhai-Fudan Research Institute of Innovation, Guangdong-Macao In-Depth Cooperation Zone, Hengqin 519031, China.
Department of Materials Science, Fudan University, Shanghai 200438, China.
Molecules. 2024 Jan 17;29(2):457. doi: 10.3390/molecules29020457.
Oligomers and polymers consisting of multiple thiophenes are widely used in organic electronics such as organic transistors and sensors because of their strong electron-donating ability. In this study, a solution to the problem of the poor solubility of polythiophene systems was developed. A novel π-conjugated polymer material, PDPP-5Th, was synthesized by adding the electron acceptor unit, DPP, to the polythiophene system with a long alkyl side chain, which facilitated the solution processing of the material for the preparation of devices. Meanwhile, the presence of the multicarbonyl groups within the DPP molecule facilitated donor-acceptor interactions in the internal chain, which further improved the hole-transport properties of the polythiophene-based material. The weak forces present within the molecules that promoted structural coplanarity were analyzed using theoretical simulations. Furthermore, the grazing incidence wide-angle X-ray scanning (GIWAXS) results indicated that PDPP-5Th features high crystallinity, which is favorable for efficient carrier migration within and between polymer chains. The material showed hole transport properties as high as 0.44 cm V s in conductivity testing. Our investigations demonstrate the great potential of this polymer material in the field of optoelectronics.
由多个噻吩组成的低聚物和聚合物因其强大的给电子能力而广泛应用于有机电子学领域,如有机晶体管和传感器。在本研究中,开发了一种解决聚噻吩体系溶解性差问题的方法。通过将电子受体单元DPP添加到具有长烷基侧链的聚噻吩体系中,合成了一种新型的π共轭聚合物材料PDPP-5Th,这有利于该材料的溶液加工以制备器件。同时,DPP分子中多羰基的存在促进了内链中的供体-受体相互作用,进一步改善了聚噻吩基材料的空穴传输性能。利用理论模拟分析了分子内促进结构共面性的弱作用力。此外,掠入射广角X射线扫描(GIWAXS)结果表明,PDPP-5Th具有高结晶度,这有利于聚合物链内和链间的高效载流子迁移。在电导率测试中,该材料显示出高达0.44 cm² V⁻¹ s⁻¹的空穴传输性能。我们的研究证明了这种聚合物材料在光电子学领域的巨大潜力。