首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Use of QALE to generate potential surfaces in transition states: associative reactions of Ru_3(CO)_(12) with P-donor nucleophiles
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Use of QALE to generate potential surfaces in transition states: associative reactions of Ru_3(CO)_(12) with P-donor nucleophiles

机译:使用QALE生成过渡态的潜在表面:Ru_3(CO)_(12)与P-给体亲核试剂的缔合反应

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Previous studies of associative reactions of Ru_3(CO)_(12) have been greatly extended to include a total of 23 P-donor nucleophiles with widely differing electronic and steric properties. Application of standard QALE methodology (QALE = quantitative analysis of ligand effects) enabled the rate constants to be analyzed according to the electronic and steric properties of the nucleophiles. It was unexpectedly found necessary to include what has become known as the aryl effect in this analysis, together with a positive contribution to the rates due to the π-acidity of phosphite nucleophiles. Also the analysis was found to be quite sensitive to the cone angle taken for P(n-Bu)_3 and the value 136°, favoured by Giering and Prock, was found to be superior to Tolman's value of 132°. The individual contributions of the various effects of the rate constants for each ligand are presented as absolute contributions to ΔG~(++) or fractional contributions to the rate constants. σ-Basicity and steric effects are represented graphically by a three-dimensional 'logk_2 surface' to which the aryl and π-acidity effects can be added and appear as peaks. This logk_2 surface can be converted into a free energy or potential energy surface by a simple scale change for the y-axis. However, a free energy surface would be difficult to represent, unless minus ΔG~(++) was plotted on the y-axis, because 'negative spikes' would represent a graphical problem.
机译:Ru_3(CO)_(12)的缔合反应的以前的研究已大大扩展,以包括总共23个具有广泛不同的电子和空间特性的P-给体亲核体。标准QALE方法学(QALE =配体效应的定量分析)的应用使速率常数能够根据亲核试剂的电子和空间特性进行分析。出乎意料地发现,有必要在该分析中包括所谓的芳基效应,以及由于亚磷酸酯亲核体的π酸度而对速率产生的积极贡献。另外,发现分析对P(n-Bu)_3所取的锥角非常敏感,并且发现Giering和Prock支持的136°值优于Tolman的132°值。每个配体的速率常数的各种效应的个体贡献表示为对ΔG〜(++)的绝对贡献或对速率常数的分数贡献。 σ-碱度和空间效应用三维“ logk_2表面”图形表示,可以在其中添加芳基和π-酸效应并显示为峰。通过简单的y轴比例变化,可以将该logk_2表面转换为自由能或势能表面。但是,除非在y轴上绘制了ΔG〜(++),否则自由表面将很难表示,因为“负尖峰”将表示图形问题。

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