Fu Guang-En, Yang Haoyong, Zhao Wenkai, Samorì Paolo, Zhang Tao
Key Laboratory of Marine Materials and Related Technologies, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, 315201, China.
University of Strasbourg, CNRS, ISIS UMR 7006, 8 Allée Gaspard Monge, Strasbourg, 67000, France.
Adv Mater. 2024 Sep;36(37):e2311541. doi: 10.1002/adma.202311541. Epub 2024 Apr 5.
2D conjugated polymers (2DCPs) possess extended in-plane π-conjugated lattice and out-of-plane π-π stacking, which results in enhanced electronic performance and potentially unique band structures. These properties, along with predesignability, well-defined channels, easy postmodification, and order structure attract extensive attention from material science to organic electronics. In this review, the recent advance in the interfacial synthesis and conductivity tuning strategies of 2DCP thin films, as well as their application in organic electronics is summarized. Furthermore, it is shown that, by combining topology structure design and targeted conductivity adjustment, researchers have fabricated 2DCP thin films with predesigned active groups, highly ordered structures, and enhanced conductivity. These films exhibit great potential for various thin-film organic electronics, such as organic transistors, memristors, electrochromism, chemiresistors, and photodetectors. Finally, the future research directions and perspectives of 2DCPs are discussed in terms of the interfacial synthetic design and structure engineering for the fabrication of fully conjugated 2DCP thin films, as well as the functional manipulation of conductivity to advance their applications in future organic electronics.
二维共轭聚合物(2DCPs)具有平面内扩展的π共轭晶格和平面外π-π堆积,这导致电子性能增强并可能具有独特的能带结构。这些特性,连同可预设计性、明确的通道、易于后修饰和有序结构,吸引了从材料科学到有机电子学的广泛关注。在本综述中,总结了二维共轭聚合物薄膜界面合成和电导率调节策略的最新进展,以及它们在有机电子学中的应用。此外,研究表明,通过结合拓扑结构设计和目标电导率调整,研究人员制备了具有预设计活性基团、高度有序结构和增强电导率的二维共轭聚合物薄膜。这些薄膜在各种薄膜有机电子器件中展现出巨大潜力,如有机晶体管、忆阻器、电致变色器件、化学电阻器和光电探测器。最后,从用于制备完全共轭二维共轭聚合物薄膜的界面合成设计和结构工程,以及电导率的功能调控以推动其在未来有机电子学中的应用等方面,讨论了二维共轭聚合物未来的研究方向和前景。