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基于 Pb(II)-联吡啶二羧酸配合物的光致变色超分子异构体。

Photochromic Supramolecular Isomers Derived from Pb(II)-Bipyridinedicarboxylate Complexes.

机构信息

College of Chemistry and Chemical Engineering, Qingdao University, Qingdao, Shandong 266071, P.R. China.

出版信息

Inorg Chem. 2023 Jun 5;62(22):8663-8669. doi: 10.1021/acs.inorgchem.3c00835. Epub 2023 May 24.

Abstract

Photochromic metal-organic complexes (PMOCs) have received huge attention of chemists, thanks to their diverse structural characteristic and various available photo-modulate physicochemical functionalities. The organic ligand plays a crucial role in the quest of PMOCs with specific photo-responsive functionalities. The multiple coordination modes of polydentate ligands also provide possibilities for forming isomeric MOCs, which may open a new perspective on the research of PMOCs. The exploration of suitable PMOC systems is significant for the yield of isomeric PMOCs. Taking into account extant PMOCs based on polypyridines and carboxylate as electron acceptors (EAs) and donors (EDs), the covalent fusion of suitable pyridyl and carboxyl species may produce single functionalized ligands bearing ED and EA moieties for the building of novel PMOCs. In this study, the coordination assembly of bipyridinedicarboxylate (2,2'-bipyridine-4,4'-dicarboxylic acid, Hbpdc) and Pb ions generate two isomeric MOCs, [Pb(bpdc)]·HO ( and ), which have the same chemical compositions with main discrepancies in the coordination mode of bpdc ligands. As expected, supramolecular isomers and exhibited different photochromic performance, thanks to the distinct microscopic functional structural units. A schematic encryption and anti-counterfeiting device based on complexes and has also been studied. Compared with the extensively studied PMOCs supported by photoactive ligands like pyridinium and naphthalimide-derivatives and PMOCs derived from mixed electron-accepting polydentate N-ligands and electron-donating ligands, our work provides a new idea for building PMOCs based on pyridinecarboxylic acid ligands.

摘要

光致变色金属-有机配合物(PMOCs)因其多样的结构特征和各种可用的光调制物理化学功能而受到化学家的广泛关注。有机配体在寻求具有特定光响应功能的 PMOCs 中起着至关重要的作用。多齿配体的多种配位模式也为形成异构 MOCs 提供了可能性,这可能为 PMOCs 的研究开辟新的视角。探索合适的 PMOC 体系对于获得异构 PMOCs 具有重要意义。考虑到现有的基于多吡啶和羧酸作为电子受体(EAs)和供体(EDs)的 PMOCs,合适的吡啶和羧基物种的共价融合可能会产生带有 ED 和 EA 部分的单官能化配体,用于构建新型 PMOCs。在这项研究中,联吡啶二羧酸(2,2'-联吡啶-4,4'-二羧酸,Hbpdc)和 Pb 离子的配位组装生成了两种异构 MOCs,[Pb(bpdc)]·HO(和),它们具有相同的化学组成,但 bpdc 配体的配位模式存在主要差异。正如预期的那样,由于微观功能结构单元的不同,超分子异构体和表现出不同的光致变色性能。还研究了基于配合物和的示意图加密和防伪装置。与广泛研究的以光活性配体如吡啶鎓和萘酰亚胺衍生物以及由混合电子接受多齿 N-配体和电子供体配体衍生的 PMOCs 为支撑的 PMOCs 相比,我们的工作为基于吡啶羧酸配体构建 PMOCs 提供了一个新的思路。

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