Liu Qi, Li Qiang, Li Yu, Su Taotao, Hou Binghan, Zhao Yibo, Xu Youzhi
College of Chemistry and Molecular Sciences, Henan University, Kaifeng, 475000, P.R. China.
Angew Chem Int Ed Engl. 2025 May 26;64(22):e202502536. doi: 10.1002/anie.202502536. Epub 2025 Mar 13.
Two-dimensional covalent organic frameworks (2DCOFs) are a unique class of crystalline porous materials interconnected by covalent bonds, which have attracted significant attention in recent years due to their chemical and structural diversity, as well as their applications in adsorption, separation, catalysis, and drug delivery. However, research on the electrical properties of 2DCOFs remains limited, despite their potential in organic electronics. Early studies recognized the poor electrical conductivity of 2DCOFs as a significant obstacle to their application in this field. To overcome this challenge, various strategies have been proposed to enhance conductivity. This review first introduces the concept of computational screening for 2DCOFs and explores approaches to improve their intrinsic conductivity, with a focus on four key aspects: in-plane and out-of-plane charge transport, topology, bandgap, and morphology. It then examines the application of pristine 2DCOFs in organic electronics, including applications in field-effect transistors, memristors, photodetectors, and chemiresistive gas sensors. We support these strategies with detailed statistical data, providing a comprehensive guide for the design and development of novel 2DCOFs for organic electronics. Finally, we outline future research directions, emphasizing the challenges that remain to be addressed in this emerging area.
二维共价有机框架(2DCOFs)是一类独特的通过共价键相互连接的结晶多孔材料,近年来因其化学和结构的多样性以及在吸附、分离、催化和药物递送方面的应用而备受关注。然而,尽管二维共价有机框架在有机电子学方面具有潜力,但对其电学性质的研究仍然有限。早期研究认为二维共价有机框架的低电导率是其在该领域应用的一个重大障碍。为了克服这一挑战,人们提出了各种提高导电性的策略。本文综述首先介绍了二维共价有机框架的计算筛选概念,并探讨了提高其本征导电性的方法,重点关注四个关键方面:面内和面外电荷传输、拓扑结构、带隙和形态。然后研究了原始二维共价有机框架在有机电子学中的应用,包括在场效应晶体管、忆阻器、光电探测器和化学电阻式气体传感器中的应用。我们用详细的统计数据支持这些策略,为用于有机电子学的新型二维共价有机框架的设计和开发提供了全面的指导。最后,我们概述了未来的研究方向,强调了在这个新兴领域仍有待解决的挑战。