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N-叔丁基亚氨基膦酰胺稀土金属烷基和氯配合物的简易合成方法。

Simple entry into N-tert-butyl-iminophosphonamide rare-earth metal alkyl and chlorido complexes.

作者信息

Rufanov Konstantin A, Pruß Noa K, Sundermeyer Jörg

机构信息

Department of Chemistry, M.V. Lomonosov State University of Moscow, 119991 Moscow, Russian Federation.

出版信息

Dalton Trans. 2016 Jan 28;45(4):1525-38. doi: 10.1039/c5dt03721b. Epub 2015 Dec 18.

Abstract

In situ protolysis reaction of a highly basic and sterically hindered N,N'-di-tert-butyl-iminophosphonamide ligand Ph2P([double bond, length as m-dash]N-tBu)(NH-tBu) = (NPN(tBu))H (1) with equimolar or hemimolar amounts of rare-earth metal tris-alkyls leads to dialkyl [(NPN(tBu))Ln(CH2SiMe3)2(THF)n] (Ln = Sc, n = 0 (2), Ln = Y, n = 1 (3)) and monoalkyl species [(NPN(tBu))2Ln(CH2SiMe3)] (Ln = Y (4), Nd (6), Sm (7)). One-pot reaction of [ScCl3(THF)3]/1/MeLi in 1/2/3 eq. ratio gives [(NPN(tBu))2Sc(THF)CH3] 5. Further reaction of 4 with phenylacetylene resulted in the formation of the Y-alkynyl complex [(NPN(tBu))2Y(-C[triple bond, length as m-dash]CPh)] 8. Alkyl abstraction in 2, 3 and 4 by reaction with PhNMe2HB(C6F5)4 resulted in the formation of cationic alkyl complex ion-pairs (NPN(tBu))Ln(CH2SiMe3)(THF)nB(C6F5)4 (Ln = Sc (9), Y (10)) and (NPN(tBu))2Y(THF)nB(C6F5)411, as confirmed by NMR data. The reaction of bis-NPN alkyl complexes with CHCl3 is the simplest and most reliable protocol to synthesize bis-NPN-chlorido complexes [(NPN(tBu))2Ln-Cl] (Ln = Sc (12), Y (13), Nd (14), Sm (15), Gd (16), Tb (17), Yb (18) and Lu (19)), which can become new post-metallocene alternatives to the prominent organolanthanide building blocks [Cp*2LnX]. Partial hydrolysis of 12 leads to the formation of the oxido/chlorido-capped trinuclear complex [{(NPN(tBu))Sc(μ2-Cl)}3(μ3-O)(μ3-Cl)] 20. Molecular structures of 4, 6, 7, 13, 19 and 20 were confirmed by X-ray structure analyses.

摘要

一种高碱性且位阻较大的N,N'-二叔丁基-亚氨基膦酰胺配体Ph2P([双键,长度如m破折号]N-tBu)(NH-tBu) = (NPN(tBu))H (1)与等摩尔或半摩尔量的稀土金属三烷基化合物发生原位质子解反应,生成二烷基化合物[(NPN(tBu))Ln(CH2SiMe3)2(THF)n] (Ln = Sc, n = 0 (2), Ln = Y, n = 1 (3))和单烷基化合物[(NPN(tBu))2Ln(CH2SiMe3)] (Ln = Y (4), Nd (6), Sm (7))。按1/2/3的化学计量比,[ScCl3(THF)3]/1/MeLi进行一锅反应得到[(NPN(tBu))2Sc(THF)CH3] 5。4与苯乙炔进一步反应生成Y-炔基配合物[(NPN(tBu))2Y(-C[三键,长度如m破折号]CPh)] 8。2、3和4与PhNMe2HB(C6F5)4反应发生烷基夺取,生成阳离子烷基配合物离子对(NPN(tBu))Ln(CH2SiMe3)(THF)nB(C6F5)4 (Ln = Sc (9), Y (10))和(NPN(tBu))2Y(THF)nB(C6F5)411,核磁共振数据证实了这一点。双-NPN烷基配合物与CHCl3反应是合成双-NPN-氯配合物[(NPN(tBu))2Ln-Cl] (Ln = Sc (12), Y (13), Nd (14), Sm (15), Gd (16), Tb (17), Yb (18)和Lu (19))最简单且最可靠的方法,这些配合物可成为重要有机镧系结构单元[Cp*2LnX]的新型后茂金属替代物。12的部分水解导致形成氧化/氯封端的三核配合物[{(NPN(tBu))Sc(μ2-Cl)}3(μ3-O)(μ3-Cl)] 20。通过X射线结构分析确定了4、6、7、13、19和20的分子结构。

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