Chemistry Program , New York University Abu Dhabi (NYUAD) , Saadiyat Island , United Arab Emirates.
School of Science and Technology , Nottingham Trent University , Clifton Lane , NG11 8NS Nottingham , U.K.
J Am Chem Soc. 2019 Dec 4;141(48):19078-19087. doi: 10.1021/jacs.9b09643. Epub 2019 Nov 19.
Light-operated materials have gained significant attention for their potential technological importance. To achieve molecular motion within extended networks, stimuli-responsive units require free space. The majority of the so far reported 2D-extended organic networks with responsive moieties restrict their freedom of motion on account of their connectivity providing constrained free volume for efficient molecular motion. We report here a light-responsive azobenzene-functionalized covalent organic framework (TTA-AzoDFP) designed in a way that the pendent azobenzene groups are pointing toward the pore channels with sufficient free volume necessary for the unencumbered dynamic motion to occur inside the pores of the covalent organic framework (COF) and undergo a reversible - photoisomerization upon light irradiation. The resulting hydrophobic COF was used for the storage of rhodamine B and its controlled release in solution by the mechanical motion of the azobenzene units triggered by ultraviolet-light irradiation. The TTA-AzoDFP displayed unprecedented photoregulated fluorescence emission behavior upon UV-light irradiation. Size, emission, and degree of hydrophobicity with respect to photoisomerization could be reversibly controlled by alternating UV- and visible-light exposure. The results reported here demonstrate once again the importance of the careful design of the linkers not only to allow the incorporation of molecular switches within the chemical structure of COFs but also to provide the required free space for not hindering their motion. The results demonstrate that responsive COFs could be suitable platforms for delivery systems that can be controlled by external stimuli.
光响应材料因其潜在的技术重要性而受到广泛关注。为了在扩展网络中实现分子运动,响应单元需要自由空间。迄今为止,大多数具有响应性部分的二维扩展有机网络由于其连接性为有效分子运动提供了受限的自由体积,从而限制了它们的运动自由度。我们在这里报告了一种光响应的偶氮苯功能化共价有机框架(TTA-AzoDFP),其设计方式使得悬垂偶氮苯基团指向具有足够自由体积的孔道,这些自由体积对于共价有机框架(COF)内部孔道中无阻碍的动态运动是必要的,并在光照射下发生可逆的光异构化。所得疏水性 COF 用于在溶液中储存罗丹明 B,并通过偶氮苯单元的机械运动触发紫外光照射来控制其释放。TTA-AzoDFP 在紫外光照射下表现出前所未有的光调控荧光发射行为。光异构化的尺寸、发射和疏水性程度可以通过交替的紫外光和可见光照射来可逆控制。这里报道的结果再次证明了精心设计连接体的重要性,这不仅允许将分子开关纳入 COF 的化学结构中,而且还为其运动提供了所需的自由空间,以避免阻碍其运动。结果表明,响应性 COF 可以作为可以通过外部刺激控制的输送系统的合适平台。