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Composition of catalyst resting states of hydroformylation catalysts derived from bulky mono-phosphorus ligands, rhodium dicarbonyl acetylacetonate and syngas

机译:庞大的单磷配体,二羰基乙酰丙酮铑和合成气衍生的加氢甲酰化催化剂的催化剂静止状态组成

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摘要

The paper describes the composition of the resting states of several catalysts for alkene hydroformylation derived from bulky monophosphorus ligands. The results presented assess how bulky ligands compete with CO for the rhodium, and hence the role of ‘unmodified’ catalysts in alkene hydroformylation in the presence of these ligands. High Pressure Infra-Red (HPIR) spectroscopy was carried out at the rhodium and syngas concentrations typically used during catalysis experiments. These HPIR studies revealed that two ligands previously studied in Rh-catalysed hydroformylation react with [Rh(acac)(CO)] and H/CO to give the unmodified rhodium cluster, [Rh(CO)], as the only detectable species. Both less bulky phosphoramidites, and 1,3,5,7-Tetramethyl-6-phenyl-2,4,8-trioxa-6-phosphaadamantane, on the other hand, do not show the presence of [Rh(CO)], and hence catalysis proceeds by purely ligand modified species under normal conditions. In the case of the Rh/ phosphaadamantane catalysts, anecdotal evidence that this only forms a particularly useful catalyst above a certain pressure threshold can be understood in terms of how the catalyst composition varies with pressure. The ligands discussed have all been assessed in the hydroformylation of propene to separate their innate branched selectivity from their ability to isomerise higher alkenes to internal isomers.
机译:该论文描述了衍生自庞大的单磷配体的几种烯烃加氢甲酰化催化剂的静止态组成。提出的结果评估了庞大的配体如何与CO竞争铑,因此评估了在这些配体存在下“未改性”催化剂在烯烃加氢甲酰化中的作用。高压红外(HPIR)光谱是在催化实验中通常使用的铑和合成气浓度下进行的。这些HPIR研究表明,先前在Rh催化的加氢甲酰化反应中研究的两个配体与[Rh(acac)(CO)]和H / CO反应,得到未修饰的铑簇[Rh(CO)],这是唯一可检测的物种。另一方面,体积较小的亚磷酰胺和1,3,5,7-四甲基-6-苯基-2,4,8-三氧杂-6-磷酸金刚烷均不显示[Rh(CO)]的存在,因此,在正常条件下,纯配体修饰的物质会催化。在Rh /磷金刚烷催化剂的情况下,从催化剂组成如何随压力变化的角度可以理解,轶事证据表明它仅在高于一定压力阈值时形成特别有用的催化剂。所讨论的配体均已在丙烯的加氢甲酰化中进行了评估,以将其先天的支化选择性与将高级烯烃异构化为内部异构体的能力分开。

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