Gohari Mohammad Hossein, Ghamari Pegah, Hamzehpoor Ehsan, Effaty Farshid, Friščić Tomislav, Perepichka Dmytro F
Department of Chemistry, McGill University 801 Sherbrooke St.W. Montreal H3A 09B Canada
Centre Énergie, Matériaux et Télécommunications, Institut National de la Recherche Scientifique Varennes Québec J3X 1S2 Canada.
Chem Sci. 2025 Sep 1. doi: 10.1039/d5sc04390e.
We report that mechanochemistry enables the synthesis of new π-conjugated covalent organic frameworks (COFs) based on naphthotetrathiophenetetracarbaldehydes 2TTN and 3TTN, expanding the scope of COF structures with two new isomeric tetradentate nodes. While recent studies have explored COF isomerism by varying bidentate linkers to tune electronic properties, the impact of isomerism remains largely unexplored. Here, we overcome these limitations using mechanochemistry to access COFs based on insoluble fused polycyclic heteroaromatic monomers. These COFs exhibit broad absorption across the visible spectrum with 3TTN COFs showing a red-shifted absorption compared to their 2TTN-counterparts. Microwave-assisted post-modification of COFs the Doebner reaction converts imine into quinoline linkages, enhancing the chemical stability of the COF. We explore the effect of the node structure (2TTN3TTN) and the network connectivity (phenylenediamine, biphenylenediamine and biquinoline) on optical band-gaps of the COFs. All COFs have shown a marked increase in electrical conductivity, by 6 orders of magnitude, upon p-doping with iodine. Quinoline-linked COFs showed proton conductivity up to 1.2 × 10 S cm at 60 °C and a relative humidity of 75%. This work suggests new possibilities for electronic modulation in COFs through isomerism and offers a sustainable route to robust, tunable, heteroaromatic frameworks.
我们报道了机械化学能够合成基于萘并四噻吩四甲醛2TTN和3TTN的新型π共轭共价有机框架(COF),通过两个新的异构四齿节点扩展了COF结构的范围。虽然最近的研究通过改变双齿连接体来探索COF异构现象以调节电子性质,但异构现象的影响在很大程度上仍未得到探索。在这里,我们利用机械化学克服这些限制,以获得基于不溶性稠合多环杂芳族单体的COF。这些COF在可见光谱范围内表现出广泛的吸收,与2TTN对应物相比,3TTN COF显示出红移吸收。通过多步反应对COF进行微波辅助后修饰,将亚胺转化为喹啉连接体,提高了COF的化学稳定性。我们探索了节点结构(2TTN、3TTN)和网络连接性(苯二胺、联苯二胺和联喹啉)对COF光学带隙的影响。所有COF在碘p掺杂后电导率均显著增加,增加了6个数量级。喹啉连接的COF在60°C和75%相对湿度下显示出高达1.2×10 S cm的质子传导率。这项工作通过异构现象为COF中的电子调制提供了新的可能性,并为坚固、可调谐的杂芳族框架提供了一条可持续的途径。