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首页> 外文期刊>Journal of Catalysis >Adsorption of cinchonidine on platinum: a DFT insight in the mechanism of enantioselective hydrogenation of activated ketones
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Adsorption of cinchonidine on platinum: a DFT insight in the mechanism of enantioselective hydrogenation of activated ketones

机译:辛可尼丁在铂上的吸附:DFT对活化酮对映选择性氢化机理的认识

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The adsorption of cinchonidine on platinum has been calculated with relativistically corrected density-functional theory, by first studying the interaction of the 1(S)-(4-quinolinyl)ethanol with a platinum cluster of 31 metal atoms, and by successive addition and separate optimization of the quinuclidine moiety. The conformations of the alkaloid on the surface were analyzed and their possible interactions with a surface chemisorbed methylpyruvate and acetophenone are discussed. A chiral space that is able to selectively accommodate surface enantiomers and to promote their rapid hydrogenation in a ligand-accelerated fashion has been determined. The role of the O-alkylation of the alkaloid in the modulation of enantioselectivity has been rationalized within the new interaction model. (C) 2004 Elsevier Inc. All rights reserved.
机译:首先通过研究1(S)-(4-喹啉基)乙醇与31个金属原子的铂簇的相互作用,并通过相继添加和分离,利用相对论校正的密度泛函理论计算了辛可尼定在铂上的吸附量。优化奎宁环部分。分析了生物碱在表面上的构象,并讨论了它们与化学吸附的丙酮酸甲酯和苯乙酮的可能相互作用。已经确定了能够选择性地容纳表面对映体并以配体加速方式促进其快速氢化的手性空间。在新的相互作用模型中,生物碱的O-烷基化在对映体选择性调节中的作用已得到合理化。 (C)2004 Elsevier Inc.保留所有权利。

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