A new family of thiolate-bridged bimetallic complexes featuring a benzimidazole moiety: synthesis, structure and redox reactivity.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-11-04 DOI:10.1039/d4dt02484b
Kai Di, Dawei Yang, Linan Su, Ronghuan Du, Shengbin Dong, Baomin Wang, Jingping Qu
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Abstract

Thiolate-bridged bimetallic complexes have attracted considerable attention owing to their extensive applications in bioinspired catalysis as biological metalloenzymes. Compared with bimetallic complexes supported by common thiolate ligands, those featuring functional groups that may adopt different patterns to coordinate to the metal centers are usually difficult to access, limiting their exploration. The benzimidazole moiety is a multi-faceted functional group; for example, it can act as a biomolecule-responsive ligand for the development of transition metal complexes with anticancer and antitumor properties. However, so far, there has been no report on thiolate-bridged bimetallic complexes featuring a benzimidazole moiety as the functional group. In this work, we use half-sandwich type monometallic (iron, cobalt or ruthenium) complexes as precursors to synthesize a series of thiolate-bridged bimetallic complexes via reactions with benzimidazolylmethyl disulfide (bzmds) and benzimidazol-2-ylmethanethiol (bzmt). X-ray crystallographic analyses show that diiron and dicobalt complexes feature two bzmt ligands in a syn configuration, which are bridged to the two MIII centers through the sulfur and nitrogen atoms. In contrast, the diruthenium complex possesses syn- and anti-configuration isomers in both solution- and solid-state, and the corresponding ratio of the two isomers varies upon employing different solvents. Electrochemical studies reveal that these complexes possess two or more redox couples. In particular, an FeIIIFeIII complex can undergo one-electron reduction to give an isolable FeIIFeIII species. In addition, we investigated their electronic structures by UV/vis spectroscopy and density functional theory (DFT).

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以苯并咪唑分子为特征的硫醇桥接双金属复合物新家族:合成、结构和氧化还原反应性。
由于硫酸盐桥接双金属配合物作为生物金属酶在生物启发催化中的广泛应用,它们引起了人们的极大关注。与普通硫代配体支持的双金属配合物相比,那些具有可采用不同模式与金属中心配位的官能团的配合物通常难以获得,从而限制了对它们的探索。苯并咪唑是一种多方面的官能团,例如,它可以作为一种生物大分子响应配体,用于开发具有抗癌和抗肿瘤特性的过渡金属配合物。然而,迄今为止,还没有关于以苯并咪唑为官能团的硫醇桥接双金属复合物的报道。在这项工作中,我们以半三明治型单金属(铁、钴或钌)配合物为前体,通过与苯并咪唑甲基二硫化物(bzmds)和苯并咪唑-2-基甲硫醇(bzmt)反应,合成了一系列硫醇桥接双金属配合物。X 射线晶体学分析表明,二铁和二钴配合物具有两个同步构型的 bzmt 配体,它们通过硫原子和氮原子与两个 MIII 中心桥接。相比之下,二钌配合物在溶液和固体状态下都具有同构型和反构型异构体,而且这两种异构体的相应比例在使用不同溶剂时会发生变化。电化学研究表明,这些复合物具有两种或两种以上的氧化还原偶联物。特别是,FeIIIFeIII 复合物可以进行单电子还原,生成可分离的 FeIIFeIII 物种。此外,我们还通过紫外/可见光谱和密度泛函理论(DFT)研究了它们的电子结构。
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CiteScore
7.20
自引率
4.30%
发文量
567
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