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Approaches to quantifying the electronic and steric properties of metallodithiolates as ligands in coordination chemistry

机译:在配位化学中量化金属二硫代磺酸盐作为配体的电子和空间特性的方法

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The well-known steric and electronic factors developed for phosphines by Tolman have influenced the design of organometallic complexes for catalytic processes for nearly a half century. Metallodithiolates as in square planar MN2S2, MP2S2, and MS'S-2(2) complexes utilize cis-dithiolates as mono- or bidentate donors to exogeneous metals, such as low valent metal carbonyls and nitrosyls wherein their established donor abilities are similar to phosphines. The highly asymmetric heterobimetallic complexes have folded "butterfly" structures deriving from their hinged M(mu-SR)(2)M' cores. Analysis of the electronic factors of representatives from a broad series of MN2S2 complexes is referenced to electrochemical redox events as well as the vibrational spectroscopy of diatomic ligand reporters. Steric properties are assessed from XRD studies that yield common metric parameters such as bite angle; they define as well the hinge angle of the bridging thiolate, and the wedge that encompasses the largely planar ligands in bidentate bonding. Adaptation of various approaches to defining ligand steric factors such as the solid angle and percent buried-volume permits comparison with ligands such as phosphines or simple imines. According to the percent buried volume, spacial requirements of MN2S2 ligands are within a range of 33-36% and in-between the 1,1-bis(diphenylphosphino)methane, dppm, (38%) and bipyridine (30%). The asymmetry and tunability of such MN2S2 metalloligands for both electronic and steric control are prospects for applications in catalytic processes. (C) 2016 Published by Elsevier B.V.
机译:托尔曼为膦开发的众所周知的空间和电子因素已经影响了近半个世纪的催化过程有机金属配合物的设计。方形平面MN2S2,MP2S2和MS'S-2(2)配合物中的金属二硫醇盐利用顺二硫醇盐作为外源金属(例如低价金属羰基金属和亚硝酰基)的单或双齿供体,它们已建立的供体能力类似于膦。高度不对称的异双金属配合物具有折叠的“蝴蝶”结构,该结构源自其铰接的M(mu-SR)(2)M'核。对大量MN2S2配合物代表的电子因子进行分析时,可参考电化学氧化还原事件以及双原子配体报告分子的振动光谱。通过XRD研究评估立体性能,这些研究可得出常用的度量参数,例如咬合角度;它们还定义了桥连硫醇盐的铰链角,以及定义了双齿键合中大部分平面配体的楔形物。各种方法可用于定义配体空间因素,例如立体角和掩埋体积百分比,从而可与配体(例如膦或简单的亚胺)进行比较。根据掩埋体积百分比,MN2S2配体的空间要求在33-36%的范围内,并且介于1,1-双(二苯基膦基)甲烷,dppm(38%)和联吡啶(30%)之间。用于电子和空间控制的这种MN2S2金属配体的不对称性和可调谐性是在催化过程中应用的前景。 (C)2016由Elsevier B.V.发布

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