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通过辛可尼定醚衍生物吸附产生的手性修饰铂:探索手性位点

Chirally modified platinum generated by adsorption of cinchonidine ether derivatives: towards uncovering the chiral sites.

作者信息

Bonalumi Norberto, Vargas Angelo, Ferri Davide, Baiker Alfons

机构信息

Department of Chemistry and Applied Biosciences, Institute for Chemical and Bioengineering, ETH Zurich, Hönggerberg, 8093, Zurich, Switzerland.

出版信息

Chemistry. 2007;13(33):9236-44. doi: 10.1002/chem.200700650.

Abstract

The adsorption behavior of O-methyl and O-trimethylsilyl derivatives of cinchonidine (CD), employed as chiral modifiers for heterogeneous enantioselective hydrogenations on supported Pt catalysts, has been investigated by using attenuated total reflection infrared spectroscopy (ATR-IR) and density functional theory (DFT) electronic structure calculations. The ATR-IR spectroscopic investigation provided detailed insight of the adsorbed modifiers under conditions close to those employed during catalytic processes, and electronic structure calculations were used as a complement to the experiments to uncover the implications of conformational changes in generating the topology of the surface chiral site. The structural investigation of the adsorbed modifiers revealed a relationship between the spatial positions of the ether substituents and the enantiodifferentiation induced by the modified catalyst observed in the hydrogenation of alpha-activated ketones. Experiments and calculations corroborate a model, according to which the addition of a bulky ether group to CD reshapes the chiral sites, thus generating catalytic chiral surfaces with different and, in some cases (e.g. hydrogenation of ketopantolactone), even opposite enantioselective properties to those obtained with CD without altering the absolute configuration of the modifier. The study also confirms that active surface conformations of cinchona modifiers are markedly different from those existing in vacuum and in solution, thus underlying the necessity of investigating the surface-modifier interaction in order to understand enantioselectivity.

摘要

辛可尼定(CD)的O-甲基和O-三甲基硅烷基衍生物作为负载型铂催化剂上多相对映选择性氢化的手性修饰剂,其吸附行为已通过衰减全反射红外光谱(ATR-IR)和密度泛函理论(DFT)电子结构计算进行了研究。ATR-IR光谱研究提供了在接近催化过程中使用的条件下吸附修饰剂的详细信息,电子结构计算用作实验的补充,以揭示构象变化对产生表面手性位点拓扑结构的影响。对吸附修饰剂的结构研究揭示了醚取代基的空间位置与在α-活化酮氢化中观察到的修饰催化剂诱导的对映体分化之间的关系。实验和计算证实了一个模型,根据该模型,向CD中添加一个庞大的醚基团会重塑手性位点,从而产生具有不同对映选择性的催化手性表面,在某些情况下(例如酮泛内酯的氢化),甚至与未改变修饰剂绝对构型的CD所获得的对映选择性相反。该研究还证实,金鸡纳修饰剂的活性表面构象与真空和溶液中存在的构象明显不同,因此强调了研究表面-修饰剂相互作用以理解对映选择性的必要性。

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