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硝基苯酚和羟基苯甲酸异构体的分子印迹:分子结构和酸度对印迹的影响。

Molecular imprinting of nitrophenol and hydroxybenzoic acid isomers: effect of molecular structure and acidity on imprinting.

作者信息

Huang Xiaodong, Kong Liang, Li Xin, Zheng Chaojun, Zou Hanfa

机构信息

National Chromatographic Research and Analysis Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116011, People's Republic of China.

出版信息

J Mol Recognit. 2003 Nov-Dec;16(6):406-11. doi: 10.1002/jmr.627.

Abstract

Three nitrophenol isomer-imprinted polymers were prepared under the same conditions using 4-vinylpyridine as a functional monomer. Different recognition capacities for template molecules were observed for the three polymers. Another imprinting system with stronger acidity than nitrophenol isomers, 2-hydroxybenzoic acid (salicylic acid) and 4-hydroxybenzoic acid, was imprinted using 4-vinylpyridine or acrylamide as functional monomer respectively. Both 4-hydroxybenzoic acid-imprinted polymers using the two monomers showed recognition ability for the template molecule. However, when acrylamide was chosen as functional monomer, the salicylic acid-imprinted polymer showed very weak recognition for the template molecule, whereas strong recognition ability of the resultant polymer for salicylic acid was observed with 4-vinylpyridine as functional monomer. It seems that the structure and acidity of template molecules is responsible for the difference in recognition, by influencing the formation and strength of interaction between template molecule and functional monomer during the imprinting process. An understanding of the mechanism of molecular imprinting and molecular recognition of MIPs will help to predict the selectivity of MIPs on the basis of template molecule properties.

摘要

以4-乙烯基吡啶作为功能单体,在相同条件下制备了三种硝基苯酚异构体印迹聚合物。观察到这三种聚合物对模板分子具有不同的识别能力。分别以4-乙烯基吡啶或丙烯酰胺作为功能单体,对另一种酸性比硝基苯酚异构体更强的印迹体系——2-羟基苯甲酸(水杨酸)和4-羟基苯甲酸进行印迹。使用这两种单体的4-羟基苯甲酸印迹聚合物均对模板分子表现出识别能力。然而,当选择丙烯酰胺作为功能单体时,水杨酸印迹聚合物对模板分子的识别能力非常弱,而以4-乙烯基吡啶作为功能单体时,所得聚合物对水杨酸表现出较强的识别能力。在印迹过程中,模板分子的结构和酸度似乎通过影响模板分子与功能单体之间相互作用的形成和强度,导致了识别差异。了解分子印迹聚合物的分子印迹和分子识别机制,将有助于根据模板分子的性质预测分子印迹聚合物的选择性。

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