首页> 外文期刊>Journal of physical chemistry letters >Revealing Catalytically Relevant Surface Species by Kinetic Isotope Effect Spectroscopy: H-Bonding to Ester Carbonyl of trans-Ethyl Pyruvate Controls Enantioselectivity on a Cinchona-Modified Pt Catalyst
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Revealing Catalytically Relevant Surface Species by Kinetic Isotope Effect Spectroscopy: H-Bonding to Ester Carbonyl of trans-Ethyl Pyruvate Controls Enantioselectivity on a Cinchona-Modified Pt Catalyst

机译:通过动力学同位素效应光谱揭示催化相关的表面物质:对丙酮酸乙基丙酮酸酯的酯羰基对诱导酶改性的PT催化剂进行对映选择性的

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摘要

Monitoring active surface species on an operating technical catalyst is a challenging task due to the presence of multiple different adsorption sites and the abundance of bulk species. In this work, kinetic isotope effect (KIE) spectroscopy is introduced to capture the signals of catalytically relevant hydrogenation species from the IR spectroscopic detection in attenuated total reflection mode. The catalytic interface formed between a cinchona-modified Pt/Al2O3 catalyst and the solvent toluene is sensitively probed directly at the rate limiting step(s) during the asymmetric hydrogenation of ethyl pyruvate by measuring the effects of substituting H-2 by D-2 kinetically and spectroscopically in the same operando experiment. The application of KIE spectroscopy provides unprecedented molecular level insight into the structure of the diastereomeric intermediate surface complex and the phenomenon rate enhancement, which revolutionizes our understanding of chirally modified metal catalysts.
机译:由于存在多种不同的吸附位点和大量的散装物种,监测操作技术催化剂上的活性表面物种是一个具有挑战性的任务。 在这项工作中,引入动力学同位素效应(KIE)光谱,以捕获催化相关的氢化物质的信号在衰减的全反射模式中的IR光谱检测中。 在乙基丙酮酸乙基丙酮酸的不对称步骤期间,在乙基丙酮酸的不对称步骤中直接探测形成在CinChona改性的Pt / Al 2 O 3催化剂和溶剂甲苯之间的催化界面通过测量D-2的替代方法,在乙基丙酮化物的不对称步骤中敏感地探测。 并在同一操作扬说实验中的光谱上。 KIE光谱的应用提供了前所未有的分子水平洞察分子水平的洞察力,进入非对映异构体中间表面复合物的结构和现象率增强,这彻底改变了我们对手性改性金属催化剂的理解。

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