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基于氮杂环氮鎓的配体的配位化学

Coordination chemistry of N-heterocyclic nitrenium-based ligands.

作者信息

Tulchinsky Yuri, Kozuch Sebastian, Saha Prasenjit, Mauda Assaf, Nisnevich Gennady, Botoshansky Mark, Shimon Linda J W, Gandelman Mark

机构信息

Schulich Faculty of Chemistry, Technion, The Israel Institute of Technology, Technion City, Haifa, 3200008 (Israel), Fax: (+) 972-4-8295703.

出版信息

Chemistry. 2015 May 4;21(19):7099-110. doi: 10.1002/chem.201405526. Epub 2015 Mar 17.

Abstract

Comprehensive studies on the coordination properties of tridentate nitrenium-based ligands are presented. N-heterocyclic nitrenium ions demonstrate general and versatile binding abilities to various transition metals, as exemplified by the synthesis and characterization of Rh(I) , Rh(III) , Mo(0) , Ru(0) , Ru(II) , Pd(II) , Pt(II) , Pt(IV) , and Ag(I) complexes based on these unusual ligands. Formation of nitrenium-metal bonds is unambiguously confirmed both in solution by selective (15) N-labeling experiments and in the solid state by X-ray crystallography. The generality of N-heterocyclic nitrenium as a ligand is also validated by a systematic DFT study of its affinity towards all second-row transition and post-transition metals (Y-Cd) in terms of the corresponding bond-dissociation energies.

摘要

本文介绍了对三齿氮鎓基配体配位性质的综合研究。N-杂环氮鎓离子对各种过渡金属表现出普遍且多样的结合能力,基于这些特殊配体的Rh(I)、Rh(III)、Mo(0)、Ru(0)、Ru(II)、Pd(II)、Pt(II)、Pt(IV)和Ag(I)配合物的合成与表征即为例证。通过选择性(15)N标记实验在溶液中以及通过X射线晶体学在固态中均明确证实了氮鎓-金属键的形成。通过对N-杂环氮鎓与所有第二周期过渡金属和后过渡金属(Y-Cd)的亲和力进行系统的密度泛函理论(DFT)研究,并结合相应的键解离能,也验证了N-杂环氮鎓作为配体的普遍性。

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