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分子印迹聚合物合理设计模型的开发:分子动力学/量子力学联合计算的计算方法

Development of a model for the rational design of molecular imprinted polymer: computational approach for combined molecular dynamics/quantum mechanics calculations.

作者信息

Dong Cunku, Li Xin, Guo Zechong, Qi Jingyao

机构信息

Department of Chemistry, Harbin Institute of Technology, Harbin 150090, China.

出版信息

Anal Chim Acta. 2009 Aug 4;647(1):117-24. doi: 10.1016/j.aca.2009.05.040. Epub 2009 Jun 6.

DOI:10.1016/j.aca.2009.05.040
PMID:19576395
Abstract

A new rational approach for the preparation of molecularly imprinted polymer (MIP) based on the combination of molecular dynamics (MD) simulations and quantum mechanics (QM) calculations is described in this work. Before performing molecular modeling, a virtual library of functional monomers was created containing forty frequently used monomers. The MD simulations were first conducted to screen the top three monomers from virtual library in each porogen-acetonitrile, chloroform and carbon tetrachloride. QM simulations were then performed with an aim to select the optimum monomer and progen solvent in which the QM simulations were carried out; the monomers giving the highest binding energies were chosen as the candidate to prepare MIP in its corresponding solvent. The acetochlor, a widely used herbicide, was chosen as the target analyte. According to the theoretical calculation results, the MIP with acetochlor as template was prepared by emulsion polymerization method using N,N-methylene bisacrylamide (MBAAM) as functional monomer and divinylbenzene (DVB) as cross-linker in chloroform. The synthesized MIP was then tested by equilibrium-adsorption method, and the MIP demonstrated high removal efficiency to the acetochlor. Mulliken charge distribution and 1H NMR spectroscopy of the synthesized MIP provided insight on the nature of recognition during the imprinting process probing the governing interactions for selective binding site formation at a molecular level. We think the computer simulation method first proposed in this paper is a novel and reliable method for the design and synthesis of MIP.

摘要

本文描述了一种基于分子动力学(MD)模拟和量子力学(QM)计算相结合的制备分子印迹聚合物(MIP)的新的合理方法。在进行分子建模之前,创建了一个包含40种常用单体的功能单体虚拟库。首先进行MD模拟,从虚拟库中筛选出在每种致孔剂(乙腈、氯仿和四氯化碳)中的前三种单体。然后进行QM模拟,目的是选择进行QM模拟的最佳单体和致孔剂溶剂;选择结合能最高的单体作为在其相应溶剂中制备MIP的候选单体。选择广泛使用的除草剂乙草胺作为目标分析物。根据理论计算结果,以乙草胺为模板,以N,N-亚甲基双丙烯酰胺(MBAAM)为功能单体,二乙烯基苯(DVB)为交联剂,在氯仿中通过乳液聚合法制备了MIP。然后通过平衡吸附法对合成的MIP进行测试,结果表明该MIP对乙草胺具有较高的去除效率。合成的MIP的Mulliken电荷分布和1H NMR光谱揭示了印迹过程中识别的本质,在分子水平上探究了选择性结合位点形成的主导相互作用。我们认为本文首次提出的计算机模拟方法是一种设计和合成MIP的新颖且可靠的方法。

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