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供体功能化ArP与软路易斯酸I的加合物:探究内溶剂化P(III)中心的同时路易斯酸性和碱性

Adducts of Donor-Functionalized ArP with the Soft Lewis Acid I: Probing Simultaneous Lewis Acidity and Basicity at Internally Solvated P(III) Centers.

作者信息

Borys Andryj M, Clark Ewan R

机构信息

School of Physical Sciences, Ingram Building, University of Kent , Canterbury CT2 7NH, U.K.

出版信息

Inorg Chem. 2017 Apr 17;56(8):4623-4635. doi: 10.1021/acs.inorgchem.7b00278. Epub 2017 Apr 4.

Abstract

The enhancement of donor strength of ortho-functionalized triarylphosphanes is shown to occur via different mechanisms for O- and N-donor substituents, with internal solvation of the phosphorus center observed for N donors. Nevertheless, the steric congestion about the P center is shown to significantly oppose the increase in donor ability, leading to donation weaker than that expected. A series of mono- and bis-aryl-substituted ArPI adducts (Ph(o-OMe-CH)PI, Ph(o-NMe-CH)PI, Ph(o-CHNMe-CH)PI (n = 1, 2)) have been synthesized via the 1:1 reaction of donor-functionalized phosphanes with diiodine. These soft Lewis acid/base adducts exhibit apparent internal solvation of the donor phosphorus by the pendant donor moieties, giving rise to five- or six-coordinate phosphorus atoms acting as both Lewis base and Lewis acid; the first neutral six-coordinate simultaneous P(III) Lewis acid and Lewis base adduct is reported. Single-crystal X-ray diffraction studies reveal unexpectedly weak donor strength for one of the phosphanes, indicating significant steric hindrance as a consequence of internal solvation. Crystallographic interrogation of the corresponding iodophosphonium salts [ArPI]X (X = I, BAr) shows that the cationic complexes experience a still greater influence of the steric bulk of the donor moieties than their neutral precursors. The steric and electronic contributions to bonding have been analyzed through computational studies, determining the factors governing the basicity of these donor-functionalized phosphanes, and show that enhancement of P-centered donor strength occurs by conjugation of lone pairs through the arene rings for oxygen substituents and via internal solvation for the nitrogen donors.

摘要

邻位官能化三芳基膦供体强度的增强通过不同机制分别发生在氧供体和氮供体取代基上,对于氮供体观察到磷中心的内溶剂化。然而,磷中心周围的空间拥挤显著阻碍了供体能力的增加,导致供体作用比预期的弱。通过供体官能化膦与二碘的1:1反应合成了一系列单芳基和双芳基取代的ArPI加合物(Ph(o-OMe-CH)PI、Ph(o-NMe-CH)PI、Ph(o-CHNMe-CH)PI (n = 1, 2))。这些软路易斯酸/碱加合物表现出供体磷被侧链供体部分明显内溶剂化,产生作为路易斯碱和路易斯酸的五配位或六配位磷原子;报道了首个中性六配位同时作为P(III)路易斯酸和路易斯碱的加合物。单晶X射线衍射研究意外地揭示了其中一种膦的供体强度较弱,表明内溶剂化导致了显著的空间位阻。对相应的碘鏻盐[ArPI]X(X = I、BAr)的晶体学研究表明,阳离子配合物比其中性前体受到供体部分空间位阻的影响更大。通过计算研究分析了键合中的空间和电子贡献,确定了控制这些供体官能化膦碱性的因素,并表明对于氧取代基,以磷为中心的供体强度通过孤对电子通过芳环共轭增强,而对于氮供体则通过内溶剂化增强。

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