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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A mechanistic investigation into the elimination of phosphonium salts from rhodium-TRIPHOS complexes under methanol carbonylation conditions
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A mechanistic investigation into the elimination of phosphonium salts from rhodium-TRIPHOS complexes under methanol carbonylation conditions

机译:在甲醇羰基化条件下从铑-TRIPHOS配合物中消除of盐的机理研究

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Phosphine modified rhodium complexes are currently the topic of considerable research as methanol carbonylation catalysts, but often suffer from poor stability. This paper reports on an investigation into how coordination mode affects the elimination of phosphonium salts from rhodium complexes, namely [trans-RhCl(CO)(PPh3)(2)] 1, [RhCl(CO)(dppe)] 2, [RhCl(CO)(dppb)](2) 3, [Rh(TRIPHOS)(CO)(2)]Cl 4. These complexes are all potential pre-catalysts for methanol carbonylation. The reaction of these complexes with methyl iodide at 140 degrees C under both N-2 and CO atmospheres has been studied and has revealed clear differences in the stability of the corresponding Rh(III) complexes. In contrast to both monomeric 2 and dimeric 3 that react cleanly with CH3I to give stable Rh(III) acetyl complexes, 4 forms a novel bidentate complex after the elimination of the one arm of the ligand as a quaternised phosphonium salt. The structure of this complex has been determined spectroscopically and using X-ray crystallography. The mechanism of formation of this novel complex has been investigated using (CH3I)-C-13 and strong evidence that supports a dissociative mechanism as the means of phosphine loss from the rhodium centre is provided.
机译:作为甲醇羰基化催化剂,膦改性的铑配合物目前是相当多的研究主题,但稳定性往往很差。本文报道了有关配位模式如何影响从铑配合物即[反式-RhCl(CO)(PPh3)(2)] 1,[RhCl(CO)(dppe)] 2,[RhCl (CO)(dppb)](2)3,[Rh(TRIPHOS)(CO)(2)] Cl4。这些络合物都是甲醇羰基化的潜在潜在催化剂。在N-2和CO气氛下,研究了这些络合物与甲基碘在140℃下的反应,发现相应Rh(III)络合物的稳定性存在明显差异。与可与CH3I干净反应生成稳定的Rh(III)乙酰基络合物的单体2和二聚体3相比,在消除了配体的一个四价膦盐的单臂后,4形成了新的二齿络合物。该配合物的结构已经通过光谱法和使用X射线晶体学确定。已使用(CH3I)-C-13对这种新型络合物的形成机理进行了研究,并提供了强有力的证据来支持离解机理,因为该方法提供了膦从铑中心损失的方法。

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