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[(二甲基膦基乙烷)锰氢(甲基)]与氢化锗反应形成亚锗烯、锗基、氢化锗和锗化物配合物。

Reactions of [(dmpe)MnH(CH)] with hydrogermanes to form germylene, germyl, hydrogermane, and germanide complexes.

作者信息

Price Jeffrey S, Vargas-Baca Ignacio, Emslie David J H, Britten James F

机构信息

Department of Chemistry, McMaster University, 1280 Main St. West, Hamilton, Ontario, L8S 4M1, Canada.

McMaster Analytical X-ray Diffraction Facility (MAX), McMaster University, 1280 Main St. West, Hamilton, Ontario, L8S 4M1, Canada.

出版信息

Dalton Trans. 2023 Oct 24;52(41):14880-14895. doi: 10.1039/d3dt02437g.

Abstract

Reactions of the ethylene hydride complex -[(dmpe)MnH(CH)] (1) with secondary hydrogermanes HGeR at 55-60 °C afforded the base-free terminal germylene hydride complexes -[(dmpe)MnH(GeR)] (R = Ph; 2a, R = Et; 2b). Room temperature reactions of 2a or 2b with an excess of the primary hydrogermanes HGeR' (R' = Ph or Bu) afforded -[(dmpe)MnH(GeHR')] (R' = Ph; 3a, R' = Bu; 3b) in rapid equilibrium with small amounts of 2a/b, as well as the digermyl hydride complex -[(dmpe)MnH(GeHR')] {R' = Ph (4a) or Bu (4b)} and the -hydrogermane germyl complex -[(dmpe)Mn(GeHR')(HGeHR')] {R' = Ph (5a) or Bu (5b)}. Pure 3b was isolated from the reaction of 2b with HGeBu, whereas 3a decomposed readily in solution in the absence of free HGePh, and a pure bulk sample was not obtained. Reactions of 1 with HGeR' (R' = Ph or Bu) also proceeded at 55-60 °C to afford mixtures of 3a/b, 4a/b and 5a/b, accompanied by remaining 1. However, upon continued heating to consume 1, various unidentified manganese-containing intermediates were formed, ultimately affording the germanide complex [{(dmpe)MnH}(μ-Ge)] (6) in 17-49% spectroscopic yield. Pure was isolated in 27% yield from the reaction of 1 with HGeBu, and it is notable that this reaction involves stripping of all four substituents from the hydrogermane. Complexes 2a, 3a, and 6 were crystallographically characterized, and the nature of the MnGe bonding in these species (as well as in 2b and 3b) was probed computationally.

摘要

氢化乙烯配合物-[(dmpe)MnH(CH)] (1) 与仲氢化锗HGeR在55 - 60 °C反应,生成了无碱的末端氢化亚锗配合物-[(dmpe)MnH(GeR)] (R = Ph; 2a, R = Et; 2b)。2a或2b与过量的伯氢化锗HGeR' (R' = Ph或Bu) 在室温下反应,生成了-[(dmpe)MnH(GeHR')] (R' = Ph; 3a, R' = Bu; 3b),其与少量的2a/b处于快速平衡状态,同时还生成了氢化二锗配合物-[(dmpe)MnH(GeHR')] {R' = Ph (4a) 或Bu (4b)} 以及氢化锗亚锗配合物-[(dmpe)Mn(GeHR')(HGeHR')] {R' = Ph (5a) 或Bu (5b)}。从2b与HGeBu的反应中分离出了纯的3b,而3a在没有游离HGePh的情况下在溶液中容易分解,未能得到纯的大量样品。1与HGeR' (R' = Ph或Bu) 的反应也在55 - 60 °C进行,生成了3a/b、4a/b和5a/b的混合物,并伴有剩余的1。然而,持续加热以消耗1时,会形成各种未鉴定的含锰中间体,最终以17 - 49%的光谱产率得到锗化物配合物[{(dmpe)MnH}(μ-Ge)] (6)。从1与HGeBu的反应中以27%的产率分离出了纯的 ,值得注意的是,该反应涉及从氢化锗中脱去所有四个取代基。对配合物2a、3a和6进行了晶体学表征,并通过计算探究了这些物种(以及2b和3b)中MnGe键的性质。

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