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Substrate-controlled adsorption of cinchonidine during enantioselective hydrogenation on platinum

机译:铂对映选择性氢化过程中辛可尼定的基质控制吸附

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It is commonly accepted that the origin of enantioselection on chirally modified metals is the control of the adsorption and reactivity of the substrate by the chiral environment of the modifier. Here, we provide the first experimental evidence to a mutual process, namely, that the substrate controls the adsorption and reactivity of cinchonidine (CD) on the metal surface. Our approach is to follow the competing hydrogenation of the quinoline ring, the anchoring moiety of CD, in the presence or absence of an activated ketone substrate. On Pt/Al_2O_3 in the weakly interacting solvent toluene, CD (and 10,11-dihydro-CD) favors a C(4′) - pro(S) adsorption geometry and saturation of the heteroaromatic ring gives 1′,2′, 3′,4′(S),10,11-hexahydro-CD {(S)-CDH_6} in excess. Addition of methyl benzoylformate, ketopantolactone, or ethyl pyruvate inverts the dominant conformation of CD to C(4′) - pro(R) as indicated by the major product (R)-CDH_6, and even the rate is higher by about 30% ("inverse ligand acceleration"). Acetic acid that interacts strongly with CD exerts a similar effect on quinoline hydrogenation. In contrast, the product α-hydroxyester interacts weakly with CD, decelerates the hydrogenation of the quinoline ring and the de of CDH_6 depends on the chirality of the α-hydroxyester. These unexpected observations provide a fundamentally new insight into the complexity of the surface conformation of CD and the origin of high enantioselectivity on cinchona-modified Pt.
机译:普遍接受的是,手性改性金属上对映异构的起源是通过改性剂的手性环境控制底物的吸附和反应性。在这里,我们为共同的过程提供了第一个实验证据,即,底物控制了辛可尼定(CD)在金属表面的吸附和反应性。我们的方法是在存在或不存在活化的酮底物的情况下,对喹啉环(CD的锚固部分)进行竞争性氢化。在弱相互作用溶剂甲苯中的Pt / Al_2O_3上,CD(和10,11-二氢-CD)具有C(4')-pro(S)吸附几何形状,杂芳环的饱和度给出1',2',3过量的′,4′(S),10,11-六氢-CD {(S)-CDH_6}。如主要产物(R)-CDH_6所示,添加苯甲酰基甲酸酯甲酯,酮戊内酯或丙酮酸乙酯会使CD的主要构象反转为C(4')-pro(R),甚至该比率也高出约30%( “逆配体加速”)。与CD强烈相互作用的乙酸对喹啉加氢有相似的作用。相反,产物α-羟基酯与CD的相互作用弱,使喹啉环的氢化减速,并且CDH_6的脱除取决于α-羟基酯的手性。这些出乎意料的发现为CD表面构象的复杂性和金鸡纳修饰的Pt的高对映选择性的起源提供了根本的新见解。

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