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具有吸引力的三点相互作用在对映选择性表面化学中的重要性:丝氨酸在本征手性 Cu{531}表面上的立体特异性吸附。

The importance of attractive three-point interaction in enantioselective surface chemistry: stereospecific adsorption of serine on the intrinsically chiral Cu{531} surface.

机构信息

Department of Chemistry, The University of Reading, Whiteknights, Reading, RG6 6AD, United Kingdom.

出版信息

J Am Chem Soc. 2012 Jun 13;134(23):9615-21. doi: 10.1021/ja210499m. Epub 2012 Jun 1.

Abstract

Both enantiomers of serine adsorb on the intrinsically chiral Cu{531} surface in two different adsorption geometries, depending on the coverage. At saturation, substrate bonds are formed through the two oxygen atoms of the carboxylate group and the amino group (μ3 coordination), whereas at lower coverage, an additional bond is formed through the deprotonated β-OH group (μ4 coordination). The latter adsorption geometry involves substrate bonds through three side groups of the chiral center, respectively, which leads to significantly larger enantiomeric differences in adsorption geometries and energies compared to the μ3 coordination, which involves only two side groups. This relatively simple model system demonstrates, in direct comparison, that attractive interactions of three side groups with the substrate are much more effective in inducing strong enantiomeric differences in heterogeneous chiral catalyst systems than hydrogen bonds or repulsive interactions.

摘要

丝氨酸的对映异构体在内在手性 Cu{531}表面上以两种不同的吸附几何形状吸附,具体取决于覆盖率。在饱和时,通过羧酸盐基团的两个氧原子和氨基(μ3 配位)形成底物键,而在较低的覆盖率下,通过去质子化的β-OH 基团(μ4 配位)形成另外一个键。后一种吸附几何形状涉及手性中心的三个侧基的底物键,分别导致吸附几何形状和能量的显著更大的对映体差异,与仅涉及两个侧基的 μ3 配位相比。该相对简单的模型系统直接比较表明,与氢键或排斥相互作用相比,与底物的三个侧基的吸引力相互作用在诱导非均相手性催化剂体系中强的对映体差异方面更为有效。

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