Wang Shitao, Da Ling, Hao Jinsong, Li Jin, Wang Mao, Huang Yan, Li Zexu, Liu Zhiping, Cao Dapeng
Beijing Advanced Innovation Center for Soft Matter Science and Engineering, State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing, 100029, China.
Department of Chemistry and Molecular Biology, University of Gothenburg, Kemigården 4, 41296, Gothenburg, Sweden.
Angew Chem Int Ed Engl. 2021 Apr 19;60(17):9321-9325. doi: 10.1002/anie.202100464. Epub 2021 Mar 12.
Although π-conjugated two dimensional (2D) covalent organic frameworks (COFs) have been extensively reported, developing fully π-conjugated 3D COFs is still an extremely difficult problem due to the lack of fully π-conjugated 3D linkers. We synthesize a fully conjugated 3D COF (BUCT-COF-1) by designing a saddle-shaped building block of aldehyde-substituted cyclooctatetrathiophene (COThP)-CHO. As a consequence of the fully conjugated 3D network, BUCT-COF-1 demonstrates ultrahigh Hall electron mobility up to ≈3.0 cm V s at room temperature, which is one order of magnitude higher than the current π-conjugated 2D COFs. Temperature-dependent conductivity measurements reveal that the charge carriers in BUCT- COF-1 exhibit the band-like transport mechanism, which is entirely different from the hopping transport phenomena observed in common organic materials. The findings indicate that fully conjugated 3D COFs can achieve electron delocalization and charge-transport pathways within the whole 3D skeleton, which may open up a new frontier in the design of organic semiconducting materials.
尽管π共轭二维(2D)共价有机框架(COF)已有大量报道,但由于缺乏完全π共轭的三维连接体,开发完全π共轭的三维COF仍然是一个极其困难的问题。我们通过设计醛基取代的环辛四硫吩(COThP)-CHO的鞍形结构单元,合成了一种完全共轭的三维COF(BUCT-COF-1)。由于具有完全共轭的三维网络,BUCT-COF-1在室温下表现出高达约3.0 cm² V⁻¹ s⁻¹的超高霍尔电子迁移率,比目前的π共轭二维COF高一个数量级。温度依赖的电导率测量表明,BUCT-COF-1中的电荷载流子表现出带状传输机制,这与普通有机材料中观察到的跳跃传输现象完全不同。这些发现表明,完全共轭的三维COF可以在整个三维骨架内实现电子离域和电荷传输途径,这可能为有机半导体材料的设计开辟一个新的前沿领域。