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钌 ENE(E=S、Se)夹钳配合物的设计与合成:用于催化和生物应用的多功能体系。

Design and Syntheses of Ruthenium ENE (E = S, Se) Pincer Complexes: A Versatile System for Catalytic and Biological Applications.

机构信息

ISC Laboratory, Department of Chemistry, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, NH-8, Bandarsindri, Ajmer, Rajasthan, 305817, India.

Department of Chemistry, Birla Institute of Technology and Science, Pilani, Pilani Campus, Pilani, 333031, India.

出版信息

Chem Asian J. 2022 Nov 2;17(21):e202200736. doi: 10.1002/asia.202200736. Epub 2022 Sep 26.

Abstract

This report describes the synthesis of two ruthenium(II) ENE pincer complexes (E = S, C1 and E = Se, C2) by the reaction of bis(2-(phenylchalcogenyl)ethyl)amine (L1, L2) with RuCl (PPh ) . The complexes were characterized with the help of H and C{ H} NMR, FTIR, HRMS, cyclic voltammetry and elemental analysis techniques. The structure and bonding mode of ligand with ruthenium in C2 was established with the help of single crystal X-ray diffraction. The complex showed distorted octahedral geometry with two chlorine atoms trans to each other. The Ru-Se bond distances (Å) are 2.4564(3)-2.4630(3), Ru-N distance is 2.181(2), Ru-P distance is 2.2999(6), and Ru-Cl distances are 2.4078(6)-2.4314(6). The complexes showed good to excellent catalytic activity for the N-alkylation of o-phenylenediamine with benzyl alcohol derivatives to synthesize 1,2-disubstituted benzimidazole derivatives. The complexes were also found to be efficient for aerobic oxidation of benzyl alcohols to corresponding aldehydes which are precursors to the bisimines generated in situ during the synthesis of 1,2-disubstituted benzimidazole derivatives. Complex C2 where selenium is coordinated with ruthenium was found to be more efficient as compared to sulfur coordinated ruthenium complex C1. Since ruthenium complexes are getting increasing attention for developing new anticancer agents, the preliminary studies like binding behavior of both the complexes towards CT-DNA were studied by competitive binding with ethidium bromide (EthBr) using emission spectroscopy. In addition, the interactions of C1-C2 were also studied with bovine serum albumin (BSA) using steady state fluorescence quenching and synchronous fluorescence studies. A good stability of Ru(II) state was observed by cyclic voltammetric studies of C1-C2. Overall these molecules are good examples of bio-organometallic systems for catalytic and biological applications.

摘要

本报告描述了通过双(2-(苯杂环基)乙基)胺(L1,L2)与 RuCl(PPh3)的反应合成了两个钌(II)ENE 夹钳配合物(E = S,C1 和 E = Se,C2)。配合物通过 1H 和 13C{ H} NMR、FTIR、HRMS、循环伏安法和元素分析技术进行了表征。借助单晶 X 射线衍射确定了配体与 C2 中钌的结构和键合模式。该配合物显示出扭曲的八面体几何形状,两个氯原子彼此处于反式位置。Ru-Se 键的距离(Å)为 2.4564(3)-2.4630(3),Ru-N 距离为 2.181(2),Ru-P 距离为 2.2999(6),Ru-Cl 距离为 2.4078(6)-2.4314(6)。这些配合物对邻苯二胺与苄醇衍生物的 N-烷基化反应表现出良好到优异的催化活性,用于合成 1,2-二取代苯并咪唑衍生物。这些配合物也被发现对苄醇的有氧氧化具有高效性,苄醇氧化为相应的醛,醛是在原位生成的双亚胺的前体,在 1,2-二取代苯并咪唑衍生物的合成过程中。与配位有硫的钌配合物 C1 相比,配位有硒的钌配合物 C2 表现出更高的效率。由于钌配合物在开发新的抗癌药物方面受到越来越多的关注,因此通过与溴化乙锭(EthBr)的竞争性结合,使用发射光谱对两种配合物与 CT-DNA 的结合行为进行了初步研究。此外,还通过稳态荧光猝灭和同步荧光研究研究了 C1-C2 之间的相互作用。通过 C1-C2 的循环伏安研究观察到 Ru(II) 态的良好稳定性。总的来说,这些分子是用于催化和生物应用的生物有机金属系统的很好例子。

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