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Chiral-recognition polymer prepared by surface molecular imprinting technique

机译:表面分子印迹技术制备的手性识别聚合物

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A highly enantioselective polymer was prepared by the surface molecular imprinting technique for the separation of optically active tryptophan methyl ester. A synthetic host molecule (phenyl phosphonic acid monododecyl ester) was proved to be effective for recognizing the chirality of amino acid esters. The L- or D-tryptophan methyl ester (TrpOMe)-imprinted polymer containing the functional host molecules revealed high enantioselectivity toward the corresponding imprinted isomer. While, the racemic-TrpOMe-imprinted and unimprinted polymers did not show the enantioselectivity at all. These results mean that the complementary binding sites such as 'template-fit pockets', in which the position and the alignment of the functional group in the functional host molecule are optimally adjusted for binding the corresponding imprinted isomer, are a principal factor to recognize the target molecule. These enantioselectivities were quantitatively supported by high binding constants for the corresponding imprinted isomer. To verify the recognition mechanism of the imprinted polymer, FT-IR and H-1-NMR measurement and computational modeling were conducted. Based on the results obtained, it was concluded that the enantiomeric selectivity is endowed by the electrostatic and hydrogen bonding interactions between the-functional molecule and the target tryptophan methyl ester along with the chiral space formed on the polymer surface. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 35]
机译:通过表面分子印迹技术制备高对映选择性的聚合物,用于分离旋光性色氨酸甲酯。合成的主体分子(苯基膦酸单十二烷基酯)被证明可有效识别氨基酸酯的手性。含有功能性宿主分子的L或D色氨酸甲酯(TrpOMe)印迹聚合物显示出对相应印迹异构体的高对映选择性。而外消旋-TrpOMe印迹和未印迹聚合物根本没有显示出对映选择性。这些结果意味着,互补结合位点(例如“模板适合的口袋”)是识别该蛋白的主要因素,其中功能主体分子中官能团的位置和排列被最佳地调整以结合相应的印迹异构体。目标分子。这些对映选择性被相应的印迹异构体的高结合常数定量支持。为了验证印迹聚合物的识别机理,进行了FT-IR和H-1-NMR测量和计算建模。根据获得的结果,可以得出结论,对映异构体的选择性是由功能分子与目标色氨酸甲酯之间的静电和氢键相互作用以及在聚合物表面形成的手性空间所赋予的。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:35]

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