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Asymmetric hydrogenation on platinum: nonlinear effect of coadsorbed cinchona alkaloids on enantiodifferentiation

机译:铂的不对称氢化:共吸附的金鸡纳生物碱对对映异构体的非线性作用

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Prominent nonlinear effects in enantioselectivity were observed with a transient technique when ethyl pyruvate was hydrogenated over Pt/Al2O3 in the presence of two cinchona alkaloids, which alone afford the opposite enantiomers of ethyl lactate in excess. The changes in reaction rate and ee, detected after injection of the second alkaloid, varied strongly with type and amount of the alkaloid, and with the order of their addition to the reaction mixture. For example, under ambient conditions in acetic acid cinchonidine (CD) afforded 90% ee to (R)-ethyl lactate and addition of equimolar amount of quinidine (QD) reduced the ee to (R)-ethyl lactate only to 88%, though QD alone provided 94% ee to (S)-lactate in a slightly faster reaction. The stronger adsorption of CD on Pt in the presence of hydrogen and acetic acid was proved by UV-vis spectroscopy. The different adsorption strengths result in an enrichment of CD on the Pt surface and also in a crucial difference in the dominant adsorption geometries. CD is assumed to adsorb preferentially via the quinoline rings laying approximately parallel to the Pt surface. In this position it can interact with ethyl pyruvate during hydrogen uptake and control the enantioselectivity. The weaker adsorbing QD adopts mainly a position with the quinoline plane being tilted relative to the Pt surface and these species are not involved in the enantioselective reaction. Competing hydrogenation of the alkaloid, and steric and electronic interactions among the adsorbed species, can also influence the alkaloid efficiency and the product distribution. Hydrogenation of the quinoline rings at low alkaloid concentration resulted in unprecedented swings in the enantiomeric excess. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 74]
机译:当在两种金鸡纳生物碱存在下丙酮酸乙酯在Pt / Al2O3上氢化时,采用瞬态技术观察到了对映选择性的显着非线性效应,这单独提供了过量的乳酸乙酯相反的对映异构体。注射第二种生物碱后检测到的反应速率和ee的变化随生物碱的类型和数量以及其添加到反应混合物中的顺序而有很大变化。例如,在环境条件下,在乙酸辛可尼定(CD)中将(R)-乳酸乙酯的ee含量提高到90%,加入等摩尔量的奎尼丁(QD)则将ee(乳酸)-乳酸乙酯的ee值降低到88%。单独的QD在稍快的反应中提供了94%ee的(S)-乳酸。紫外-可见光谱法证明了在氢气和乙酸存在下,CD在Pt上的吸附更强。不同的吸附强度会导致CD在Pt表面上富集,并且在主要的吸附几何形状上也会产生关键的差异。假定CD优先通过大致平行于Pt表面的喹啉环吸附。在这个位置,它可以在氢吸收期间与丙酮酸乙酯相互作用,并控制对映选择性。较弱的吸附QD主要采用喹啉平面相对于Pt表面倾斜的位置,并且这些物质不参与对映选择性反应。生物碱竞争性氢化以及被吸附物质之间的空间和电子相互作用,也会影响生物碱效率和产物分布。低生物碱浓度下的喹啉环氢化导致对映体过量发生前所未有的波动。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:74]

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