Fujian Provincial Key Laboratory of Polymer Materials, College of Chemistry and Materials Science, Fujian Normal University, No.8 Shangsan Road, Cangshan District, Fuzhou, 350007, P. R. China.
Chemistry. 2023 Apr 18;29(22):e202204045. doi: 10.1002/chem.202204045. Epub 2023 Mar 8.
Hydrogen-bonded organic frameworks (HOFs) have shown great potential in separation, sensing and host-guest chemistry, however, the pre-design of HOFs remains challenging due to the uncertainty of solvents' participation in framework formation. Herein, the polarity-evolution-controlled framework/luminescence regulation is demonstrated based on multiple-site hydrogen-bonded organic frameworks. Several distinct HOFs were prepared by changing bonding modes of building units via the evolution of electrostatic forces induced by various solvent polarities. High-polar solvents with strong electrostatic attraction to surrounding units showed the tendency to form cage structures, while low-polar solvents with weak electrostatic attraction only occupy hydrogen-bond sites, conducive to the channel formation. Furthermore, the conformation of optical building unit can be adjusted by affecting the solvent polarity, generating different luminescence outputs. These results pave the way for the rational design of ideal HOFs with on-demand framework regulation and luminescence properties.
氢键有机框架(HOFs)在分离、传感和主客体化学方面显示出巨大的潜力,然而,由于溶剂在框架形成中的参与具有不确定性,HOFs 的预先设计仍然具有挑战性。在此,基于多位点氢键有机框架,展示了极性演变控制的框架/发光调控。通过改变构建单元的键合模式,通过各种溶剂极性诱导的静电力的演变,制备了几种不同的 HOF。具有强静电吸引周围单元的高极性溶剂表现出形成笼状结构的趋势,而具有弱静电吸引的低极性溶剂仅占据氢键位,有利于形成通道。此外,通过影响溶剂极性可以调节光学构建单元的构象,从而产生不同的发光输出。这些结果为具有按需框架调节和发光性能的理想 HOF 的合理设计铺平了道路。