Ren Xin-Ye, Chen Fan-Yao, Zhang Chun-Hua, Liang Zhen-Gang, Yu Xiao-Yue, Han Song-De, Wang Guo-Ming
College of Chemistry and Chemical Engineering, Key Laboratory of Shandong Provincial Universities for Functional Molecules and Materials, Qingdao University, Qingdao, Shandong, 266071, P. R. China.
Chemistry. 2024 Nov 26;30(66):e202402581. doi: 10.1002/chem.202402581. Epub 2024 Oct 24.
Metal-organic frameworks (MOFs) show potential application in many domains, in which photochromic MOFs (PMOFs) have received enormous attention. Researchers mainly utilize photoactive ligands to build PMOFs. Recently, the mixed electron donating and accepting ligands strategies have also been used to construct PMOFs driven by the electron transfer between nonphotochromic moieties. However, the potential interligand competition inhibits the formation of PMOFs. Therefore, the exploration of single-ligand-guided assembly is conductive for building PMOFs. Considering the existing electron accepting and donating role of pyridyl and carboxyl, the pyridinecarboxyate derived from the fusion of pyridyl and carboxyl units may serve as single ligand to yield PMOFs (Figure 1d). In this work, the coordination assembly of bipyridinedicarboxylate (2,2'-bipyridine-4,4'-dicarboxylic acid, Hbpdc; 1,10-phenanthroline-2,9-dicarboxylic acid, Hpda) and LaCl generate two PMOFs, [La(bpdc)(HO)Cl] (1) and [La(pda)(HO)Cl]⋅2HO (2). Both complexes feature dinuclear lanthanum as building blocks with differences in the connecting number of likers, in which 1 has (4,8)-connected topology and 2 exhibits sql topology. Their structural differences result in the diversities of photoresponsive functionalities. Compared with reported PMOFs built from photoactive ligands and mixed ligands, this study provides new available categories of single ligand for generating PMOFs and tuning the structure and photoresponsive properties via ligand substitution and external photostimulus.
金属有机框架材料(MOFs)在许多领域展现出潜在应用,其中光致变色金属有机框架材料(PMOFs)受到了极大关注。研究人员主要利用光活性配体来构建PMOFs。最近,供电子和吸电子混合配体策略也被用于构建由非光致变色部分之间的电子转移驱动的PMOFs。然而,潜在的配体间竞争抑制了PMOFs的形成。因此,探索单配体引导组装有助于构建PMOFs。考虑到吡啶基和羧基现有的供电子和吸电子作用,由吡啶基和羧基单元融合得到的吡啶羧酸酯可作为单配体来制备PMOFs(图1d)。在本工作中,联吡啶二羧酸(2,2'-联吡啶-4,4'-二羧酸,Hbpdc;1,10-菲咯啉-2,9-二羧酸,Hpda)与LaCl进行配位组装生成了两种PMOFs,[La(bpdc)(HO)Cl](1)和[La(pda)(HO)Cl]⋅2HO(2)。两种配合物均以双核镧为结构单元,连接体的连接数存在差异,其中1具有(4,8)连接拓扑结构,2呈现sql拓扑结构。它们的结构差异导致了光响应功能的多样性。与报道的由光活性配体和混合配体构建的PMOFs相比,本研究为生成PMOFs以及通过配体取代和外部光刺激调节结构和光响应性质提供了新的可用单配体类别。