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带有三齿氮杂环取代基的游离锗化物的合成与络合

Synthesis and Complexation of a Free Germanide Bearing a Tridentate N-Heterocyclic Substituent.

作者信息

Witteman Léon, van Beek Cody B, van Veenhuizen Oscar N, Lutz Martin, Moret Marc-Etienne

机构信息

Department of Chemistry, Debye Institute for Nanomaterials Science Utrecht University, Universiteitsweg 99, 3584 CG Utrecht, The Netherlands.

Crystal and Structural Chemistry, Bijvoet Center for Biomolecular Research, Faculty of Science, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.

出版信息

Organometallics. 2019 Jan 28;38(2):231-239. doi: 10.1021/acs.organomet.8b00630. Epub 2019 Jan 9.

Abstract

The tris-N-heterocycle germanide (tmim)Ge () (tmimH = tris(3-methylindol-2-yl)methane) was synthesized by nucleophilic substitution for the tmim trianion on GeCl·dioxane. In combination with the previously reported (tmim)Si and (tmim)P analogues, it provides a convenient model for investigating the influence of the central atom on the properties of isoelectronic ligands. Complexation of the germanide (tmim)Ge to CuCl resulted in the dimeric chloro cuprate [(tmim)GeCu(μ-Cl)] , which is prone to dissociation in MeCN to form the neutral, solvated germylcopper (tmim)GeCu(NCMe). The reaction of with Fe(CO) afforded the germyl iron tetracarbonyl [(tmim)GeFe(CO)]. Analysis of the ν̃(CO) infrared absorption bands in this complex indicates that the combined electron donating and accepting properties of are found in between those of (tmim)P and (tmim)Si. In contrast to (tmim)Si, (tmim)Ge is reluctant to coordinate to FeCl, likely because of its softer Lewis base character. Key structural features of the ligands and complexes reflect changes in their electronic properties. In particular, the N-Ge-N angles increase upon coordination to a metal fragment, suggesting increasing hybridization of the Ge s- and p-orbitals. These findings will be useful in further understanding low-valent heavier group 14 complexes in organometallic chemistry.

摘要

通过在二氧六环合氯化锗(GeCl·dioxane)上对三(3 - 甲基吲哚 - 2 - 基)甲烷三阴离子(tmim)进行亲核取代反应,合成了三 - N - 杂环锗化物(tmim)Ge()(tmimH = 三(3 - 甲基吲哚 - 2 - 基)甲烷)。与先前报道的(tmim)Si和(tmim)P类似物相结合,它为研究中心原子对等电子配体性质的影响提供了一个便利的模型。锗化物(tmim)Ge与氯化铜(CuCl)络合生成二聚氯铜酸盐[(tmim)GeCu(μ - Cl)],该化合物在乙腈中易于解离形成中性的、溶剂化的锗基铜(tmim)GeCu(NCMe)。与五羰基铁(Fe(CO))反应得到四羰基锗基铁[(tmim)GeFe(CO)]。对该配合物中ν̃(CO)红外吸收带的分析表明,(tmim)Ge的供电子和吸电子综合性质介于(tmim)P和(tmim)Si之间。与(tmim)Si不同,(tmim)Ge不太愿意与氯化铁(FeCl)配位,这可能是由于其较弱的路易斯碱性质。配体和配合物的关键结构特征反映了它们电子性质的变化。特别是,与金属片段配位时,N - Ge - N键角增大,表明锗的s轨道和p轨道杂化程度增加。这些发现将有助于进一步理解有机金属化学中低价重质第14族配合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ac5/6354728/c64084aadfec/om-2018-006308_0006.jpg

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