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取代托尔曼电子参数的金属-配体键合的直接测量

Direct Measure of Metal-Ligand Bonding Replacing the Tolman Electronic Parameter.

作者信息

Setiawan Dani, Kalescky Robert, Kraka Elfi, Cremer Dieter

机构信息

Computational and Theoretical Chemistry Group (CATCO), Department of Chemistry, Southern Methodist University , 3215 Daniel Avenue, Dallas, Texas 75275-0314, United States.

出版信息

Inorg Chem. 2016 Mar 7;55(5):2332-44. doi: 10.1021/acs.inorgchem.5b02711. Epub 2016 Feb 22.

Abstract

The Tolman electronic parameter (TEP) derived from the A1-symmetrical CO stretching frequency of nickel-tricarbonyl complexes L-Ni(CO)3 with varying ligands L is misleading as (i) it is not based on a mode decoupled CO stretching frequency and (ii) a generally applicable and quantitatively correct or at least qualitatively reasonable relationship between the TEP and the metal-ligand bond strength does not exist. This is shown for a set of 181 nickel-tricarbonyl complexes using both experimental and calculated TEP values. Even the use of mode-mode decoupled CO stretching frequencies (L(ocal)TEPs) does not lead to a reliable description of the metal-ligand bond strength. This is obtained by introducing a new electronic parameter that is directly based on the metal-ligand local stretching force constant. For the test set of 181 nickel complexes, a direct metal-ligand electronic parameter (MLEP) in the form of a bond strength order is derived, which reveals that phosphines and related ligands (amines, arsines, stibines, bismuthines) are bonded to Ni both by σ-donation and π-back-donation. The strongest Ni-L bonds are identified for carbenes and cationic ligands. The new MLEP quantitatively assesses electronic and steric factors.

摘要

从具有不同配体L的三羰基镍配合物L-Ni(CO)₃的A₁对称CO伸缩频率得出的托尔曼电子参数(TEP)具有误导性,原因如下:(i)它并非基于模式解耦的CO伸缩频率;(ii)TEP与金属-配体键强度之间不存在普遍适用且定量正确或至少定性合理的关系。这一点通过对181个三羰基镍配合物使用实验和计算得到的TEP值得到了证明。即使使用模式-模式解耦的CO伸缩频率(L(ocal)TEPs)也无法可靠地描述金属-配体键强度。这是通过引入一个直接基于金属-配体局部伸缩力常数的新电子参数来实现的。对于181个镍配合物的测试集,得出了一种键强度顺序形式的直接金属-配体电子参数(MLEP),它表明膦及相关配体(胺、胂、锑、铋)通过σ-给予和π-反馈给予与镍键合。对于卡宾和阳离子配体,确定了最强的Ni-L键。新的MLEP对电子和空间因素进行了定量评估。

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