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亚砜胺的缺电子重排反应——进入酰亚胺金属化学的便捷途径。

Sulfinylamine metathesis at oxo metal species--convenient entry into imido metal chemistry.

机构信息

Fachbereich Chemie der Philipps-Universität Marburg, Hans-Meerwein-Strasse, D-35032, Marburg an der Lahn, Deutschland.

出版信息

Dalton Trans. 2011 Mar 7;40(9):1990-7. doi: 10.1039/c0dt01133a. Epub 2010 Dec 16.

Abstract

The exchange of terminal metal oxo functionalities by N-organo and N-sulfonylimido functionalities via metathesis with bent, thus very reactive sulfinyl amines R-NSO and sulfinyl sulfonylamides R-SO(2)-NSO is described. It is demonstrated that in many cases sulfinyl amine metathesis offers a more convenient entry into imido complex synthesis than the much better investigated isocyanate metathesis at oxo complexes or condensation reactions with amines and silylated amines. Improved syntheses for some known key compounds and several new complexes of the type [V(NR)Cl(3)] and [M(NR)(2)Cl(2)] (M = Cr, Mo, W) are described. Emphasis is put on the synthesis of formerly unknown base free Lewis acids with electron-withdrawing N-substituents such as haloaryl and sulfonylaryl. Surprisingly, even [CrO(2)Cl(2)] is selectively transformed by sulfinylamines into aryl imido derivatives without any reduction by sulfur dioxide. The molecular structures of novel haloaryl imido complexes [Cr(NAr)(2)Cl(2)] Ar = C(6)F(5) and 2,4,6-Cl(3)C(6)H(2) as determined by X-ray crystallography are reported.

摘要

通过弯化的、因而非常活泼的亚磺酰基胺 R-NSO 和亚磺酰基磺酰胺 R-SO(2)-NSO 进行的 N-有机和 N-磺酰亚胺基与端金属氧功能基的交换反应被描述。结果表明,在许多情况下,亚磺酰基胺的复分解反应为亚胺络合物的合成提供了比氧化态络合物中的异氰酸酯复分解反应或与胺和硅烷基化胺的缩合反应更为方便的入口。描述了一些已知关键化合物和一些新的 [V(NR)Cl(3)] 和 [M(NR)(2)Cl(2)](M = Cr、Mo、W)型络合物的改进合成方法。重点是合成具有吸电子 N-取代基(如卤代芳基和磺酰基芳基)的以前未知的无碱路易斯酸。令人惊讶的是,即使是 [CrO(2)Cl(2)],也可以通过亚磺酰基胺选择性地转化为芳基亚胺衍生物,而不会有二氧化硫的任何还原。通过 X 射线晶体学确定的新型卤代芳基亚胺络合物 [Cr(NAr)(2)Cl(2)] Ar = C(6)F(5)和 2,4,6-Cl(3)C(6)H(2)的分子结构被报道。

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