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镓(III)的硫醚、硒醚和碲醚配合物的合成、表征及结构

Synthesis, characterisation and structures of thio-, seleno- and telluro-ether complexes of gallium(III).

作者信息

Gurnani Chitra, Levason William, Ratnani Raju, Reid Gillian, Webster Michael

机构信息

School of Chemistry, University of Southampton, Southampton, UK SO17 1BJ.

出版信息

Dalton Trans. 2008 Nov 28(44):6274-82. doi: 10.1039/b810005e. Epub 2008 Oct 2.

DOI:10.1039/b810005e
PMID:18985261
Abstract

The reactions of GaX3 (X = Cl, Br or I) with SMe2, SeMe2 and TeMe2 (L) in non-coordinating solvents produces only the pseudo-tetrahedral [GaX3L], which have been characterised by IR, Raman and multinuclear NMR (1H, 71Ga, 77Se or 125Te) spectroscopy, and by the crystal structure of [GaCl3(SeMe2)]. The 71Ga NMR resonances show small low frequency shifts for fixed halides as the neutral donors change from S --> Se --> Te. Bidentate ligands including MeS(CH2)2SMe, PhS(CH2)2SPh, MeSe(CH2)2SeMe, nBuSe(CH2)2Se(n)Bu and MeTe(CH2)3TeMe (L-L) also produce complexes with 4-coordinate gallium centres, [(GaX3)2(mu-L-L)], confirmed by the crystal structures of [(GaI3)2(mu-MeS(CH2)2SMe)], [(GaCl3)2(mu-PhS(CH2)2SPh)] and [(GaCl3)2(mu-nBuSe(CH2)2Se(n)Bu)]. The structural data are consistent with the weaker Lewis acidity of the gallium as the halide co-ligands become heavier. Multinuclear NMR studies suggest that in chlorocarbon solutions partial dissociation of the ligands occur, which increases with the halide co-ligand Cl < Br < I. The o-xylyl dithioether, o-C6H4(CH2SMe)2, despite being pre-organised for chelation, also forms [(GaCl3)2(mu-L-L)]. The corresponding diselenoether complex decomposes in solution with C-Se bond cleavage to form the selenonium salt [o-C6H4CH2Se(Me)CH2][GaCl4], which was structurally characterised. The ditelluroether o-C6H4(CH2TeMe)2 undergoes rapid C-Te bond fission and rearrangement upon reaction with GaCl3, and the telluronium species [o-C6H4CH2Te(Me)CH2]+ and [MeTe(CH2(o-C6H4)CH2TeMe)2]+ have been identified by ES+ mass spectrometry from their characteristic isotope patterns.

摘要

在非配位溶剂中,GaX3(X = Cl、Br或I)与SMe2、SeMe2和TeMe2(L)反应仅生成假四面体[GaX3L],通过红外光谱、拉曼光谱和多核核磁共振(1H、71Ga、77Se或125Te)光谱以及[GaCl3(SeMe2)]的晶体结构对其进行了表征。随着中性供体从S→Se→Te变化,对于固定的卤化物,71Ga核磁共振共振显示出小的低频位移。包括MeS(CH2)2SMe、PhS(CH2)2SPh、MeSe(CH2)2SeMe、nBuSe(CH2)2Se(n)Bu和MeTe(CH2)3TeMe(L-L)在内的双齿配体也生成具有4配位镓中心的配合物[(GaX3)2(μ-L-L)],[(GaI3)2(μ-MeS(CH2)2SMe)]、[(GaCl3)2(μ-PhS(CH2)2SPh)]和[(GaCl3)2(μ-nBuSe(CH2)2Se(n)Bu)]的晶体结构证实了这一点。结构数据与随着卤化物共配体变重镓的路易斯酸性减弱一致。多核核磁共振研究表明,在氯代烃溶液中配体会发生部分解离,且随着卤化物共配体Cl<Br<I,解离程度增加。邻二甲苯基二硫醚o-C6H4(CH2SMe)2尽管已预先组织好用于螯合,但也形成[(GaCl3)2(μ-L-L)]。相应的二硒醚配合物在溶液中分解,C-Se键断裂形成硒鎓盐[o-C6H4CH2Se(Me)CH2][GaCl4],对其进行了结构表征。二碲醚o-C6H4(CH2TeMe)2与GaCl3反应时会迅速发生C-Te键裂变和重排,通过电喷雾正离子质谱从其特征同位素模式中鉴定出碲鎓物种[o-C6H4CH2Te(Me)CH2]+和[MeTe(CH2(o-C6H4)CH2TeMe)2]+。

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