首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Photochemical and time resolved spectroscopic studies of intermediates relevant to iridium-catalyzed methanol carbonylation: Photoinduced CO migratory insertion
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Photochemical and time resolved spectroscopic studies of intermediates relevant to iridium-catalyzed methanol carbonylation: Photoinduced CO migratory insertion

机译:与铱催化的甲醇羰基化有关的中间体的光化学和时间分辨光谱研究:光诱导的CO迁移插入

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Photoreaction, time-resolved infrared (TRIR), and DFT studies were utilized to probe transformations between iridium complexes with possible relevance to the mechanisms of the iridium/iodide-catalyzed methanol carbonylation to acetic acid. Solution-phase continuous and laser flash photolysis of the tetraphenylarsonium salt of the fac-[CH3Ir(CO)(2)I-3](-) anion (1a) under excess carbon monoxide resulted in migratory insertion to give the acyl complex ion mer,trans-[Ir(C(O)CH3)(CO)(2)l(3)]- (2a). The latter was isolated as its AsPh4+ salt, and its X-ray crystal structure was determined. TRIR spectra indicate that several transients are generated upon flash photolysis of la. The principal photoreaction is CO dissociation, and this is proposed to generate the isomeric complexes fac-[CH(3)1lr(CO)(Sol)l(3)](-) (I-CO(fac), Sol = solvent) and mer,trans-[CH(3)lr(CO)(Sol)l(3)]- (I-CO(mer)). I-CO(fac) reacts with CO to regenerate 1a with a second-order rate constant (k(CO)) similar to 2.5 x 10(7) M-1 s(-1) in ambient dichloroethane, while I-CO(mer) is the apparent precursor to 2a. Kinetics studies indicate the photoinduced formation of a third intermediate (I-M), hypothesized to be the anionic acyl complex fac-[lr(C(O)CH3)(CO)(Sol)l(3)](-). In the absence of added CO, these intermediates undergo dimerization to form a mixture of isomers with the apparent formula [lr(C(O)CH3)(CO)l(3)](2)(2-). One of these dimers was isolated as the AsPh4+ salt, and the crystal structure was determined. Addition of excess pyridine to a solution of the dimers gave the neutral complex mer,trans-[lr(C(O)CH3)(CO)(py)(2)l(2)], which was characterized by FTlR, NMR, and X-ray crystallography. These transformations, especially the unprecedented photoinduced CO insertion reaction, are discussed and interpreted in terms of the factors favoring migratory insertion dynamics.
机译:利用光反应,时间分辨红外(TRIR)和DFT研究来探究铱配合物之间的转化,这可能与铱/碘化物催化的甲醇羰基化为乙酸的机理有关。过量一氧化碳下fac- [CH3Ir(CO)(2)I-3](-)阴离子(1a)的四苯基ar盐的溶液相连续和激光闪光光解导致迁移插入以生成酰基复合离子单体,反式-[Ir(C(O)CH 3)(CO)(2)1(3)]-(2a)。分离出后者的AsPh4 +盐,并确定其X射线晶体结构。 TRIR光谱表明在1a的快速光解时产生了几个瞬态。主要的光反应是CO解离,建议将其生成异构体复合物fac- [CH(3)1lr(CO)(Sol)l(3)](-)(I-CO(fac),Sol =溶剂)和mer,trans- [CH(3)lr(CO)(Sol)l(3)]-(I-CO(mer))。 I-CO(fac)与CO反应以二次速率常数(k(CO))再生1a,类似于环境二氯乙烷中的2.5 x 10(7)M-1 s(-1),而I-CO( mer)是2a的明显前体。动力学研究表明第三中间体(I-M)的光诱导形成,假设是阴离子酰基复合物fac- [lr(C(O)CH3)(CO)(Sol)l(3)](-)。在不存在添加的CO的情况下,这些中间体进行二聚化以形成具有表观式[Ir(C(O)CH3)(CO)1(3)](2)(2-)的异构体的混合物。分离出这些二聚体之一作为AsPh4 +盐,并确定了晶体结构。向二聚体溶液中添加过量吡啶,得到中性络合物mer-trans- [lr(C(O)CH3)(CO)(py)(2)l(2)],通过FTlR,NMR,和X射线晶体学。根据有利于迁移插入动力学的因素讨论和解释了这些转变,尤其是前所未有的光诱导的CO插入反应。

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