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实验和理论机制研究铱催化伯醇的脱氢脱羰反应。

Experimental and theoretical mechanistic investigation of the iridium-catalyzed dehydrogenative decarbonylation of primary alcohols.

机构信息

Department of Chemistry, Technical University of Denmark , 2800 Kgs. Lyngby, Denmark.

出版信息

J Am Chem Soc. 2015 Jan 21;137(2):834-42. doi: 10.1021/ja5106943. Epub 2015 Jan 9.

DOI:10.1021/ja5106943
PMID:25545272
Abstract

The mechanism for the iridium-BINAP catalyzed dehydrogenative decarbonylation of primary alcohols with the liberation of molecular hydrogen and carbon monoxide was studied experimentally and computationally. The reaction takes place by tandem catalysis through two catalytic cycles involving dehydrogenation of the alcohol and decarbonylation of the resulting aldehyde. The square planar complex IrCl(CO)(rac-BINAP) was isolated from the reaction between [Ir(cod)Cl]2, rac-BINAP, and benzyl alcohol. The complex was catalytically active and applied in the study of the individual steps in the catalytic cycles. One carbon monoxide ligand was shown to remain coordinated to iridium throughout the reaction, and release of carbon monoxide was suggested to occur from a dicarbonyl complex. IrH2Cl(CO)(rac-BINAP) was also synthesized and detected in the dehydrogenation of benzyl alcohol. In the same experiment, IrHCl2(CO)(rac-BINAP) was detected from the release of HCl in the dehydrogenation and subsequent reaction with IrCl(CO)(rac-BINAP). This indicated a substitution of chloride with the alcohol to form a square planar iridium alkoxo complex that could undergo a β-hydride elimination. A KIE of 1.0 was determined for the decarbonylation and 1.42 for the overall reaction. Electron rich benzyl alcohols were converted faster than electron poor alcohols, but no electronic effect was found when comparing aldehydes of different electronic character. The lack of electronic and kinetic isotope effects implies a rate-determining phosphine dissociation for the decarbonylation of aldehydes.

摘要

铱-BINAP 催化伯醇脱氢脱羰反应释放氢气和一氧化碳的机理进行了实验和计算研究。该反应通过两个催化循环的串联催化进行,涉及醇的脱氢和生成的醛的脱羰。从[Ir(cod)Cl]2、rac-BINAP 和苄醇之间的反应中分离出平面四方配合物 IrCl(CO)(rac-BINAP)。该配合物具有催化活性,并应用于催化循环中各个步骤的研究。结果表明,在整个反应过程中,一氧化碳配体一直与铱配位,并且一氧化碳的释放被认为是从二羰基配合物中发生的。还合成并检测到 IrH2Cl(CO)(rac-BINAP)在苄醇的脱氢反应中。在相同的实验中,在苄醇脱氢和随后与 IrCl(CO)(rac-BINAP)反应中释放 HCl 时检测到 IrHCl2(CO)(rac-BINAP)。这表明氯离子与醇发生取代反应,形成可进行β-氢消除的平面四方铱烷氧基配合物。确定脱羰的 KIE 为 1.0,总反应的 KIE 为 1.42。富电子的苄醇比缺电子的醇转化得更快,但当比较不同电子特性的醛时,没有发现电子效应。缺乏电子和动力学同位素效应意味着醛脱羰的速率决定步骤是膦的解离。

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