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一种双负离子C对称螯合配体:合成与配位化学

A dianionic C-symmetric scorpionate: synthesis and coordination chemistry.

作者信息

Tretiakov Serhii, Damen Johannes A M, Lutz Martin, Moret Marc-Etienne

机构信息

Utrecht University, Organic Chemistry & Catalysis, Debye Institute for Nanomaterials Science, Faculty of Science, 3584 CG Utrecht, The Netherlands.

Utrecht University, Crystal and Structural Chemistry, Bijvoet Centre for Biomolecular Research, Faculty of Science, 3584 CH Utrecht, The Netherlands.

出版信息

Dalton Trans. 2020 Oct 12;49(39):13549-13556. doi: 10.1039/d0dt02601h.

Abstract

Introducing charges into ligand systems fine-tunes their electronic properties and influences the solubility of their metal complexes. Herein, we present a synthesis of a dianionic, C3-symmetric ligand combining three anionic N-donors tethered to a positively charged phosphonium center. The tris-skatylmethylphosphonium (TSMP) ligand, isolated in the form of its dipotassium salt TSMPK2, is the first dianionic homoscorpionate capable of metal exchange. The potassium cations in TSMPK2 are exchangeable for other metals, which results in rich coordination chemistry. Thus, the ligand displays a bridging μ2:κ2:κ1 coordination mode with trigonal planar Cu(i) centers in the tetrameric complex [(TSMP)Cu]44-. The κ3 mode is accessed upon addition of 1 equiv. of P(OEt)3 per Cu(i) to yield the tetrahedral monomeric complex [(TSMP)CuP(OEt)3]-. Both Fe(ii) and Ni(ii) in pyridine give octahedral high-spin κ3 complexes with composition (TSMP)M(Py)3 (M = Fe, Ni). Displacement of three pyridine ligands in (TSMP)Fe(Py)3 for a second equivalent of TSMP gives a high-spin pseudotetrahedral 2 : 1 complex [(TSMP)2Fe]2- with the ligands in κ2 coordination mode. The reduction in coordination number is likely due to electrostatic repulsion of the negatively-charged indolides as well as their weaker π-accepting character as compared to pyridine.

摘要

将电荷引入配体体系可微调其电子性质,并影响其金属配合物的溶解度。在此,我们报道了一种二价阴离子、C3对称配体的合成,该配体由三个与带正电荷的鏻中心相连的阴离子氮供体组成。以其二钾盐TSMPK2形式分离得到的三(斯卡特基甲基)鏻(TSMP)配体,是首个能够进行金属交换的二价阴离子类蝎形配体。TSMPK2中的钾阳离子可与其他金属进行交换,这导致了丰富的配位化学。因此,该配体在四聚体配合物[(TSMP)Cu]44-中与三角平面的Cu(i)中心呈现桥连的μ2:κ2:κ1配位模式。加入每一个Cu(i) 1当量的P(OEt)3后可得到κ3模式,生成四面体单体配合物[(TSMP)CuP(OEt)3]-。吡啶中的Fe(ii)和Ni(ii)均生成组成式为(TSMP)M(Py)3(M = Fe, Ni)的八面体高自旋κ3配合物。在(TSMP)Fe(Py)3中,用第二个当量的TSMP取代三个吡啶配体,得到一个高自旋假四面体2 : 1配合物[(TSMP)2Fe]2-,其中配体呈κ2配位模式。配位数的降低可能是由于带负电荷的吲哚化物之间的静电排斥作用,以及与吡啶相比其较弱的π接受特性。

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