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首页> 外文期刊>Analytica chimica acta >Theoretical and experimental study of nicotinamide molecularly imprinted polymers with different porogens
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Theoretical and experimental study of nicotinamide molecularly imprinted polymers with different porogens

机译:具有不同成孔剂的烟酰胺分子印迹聚合物的理论和实验研究

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Based on the computational model proposed in our previous work, a comparative study of the influence of porogens on the affinity and selectivity of MIP was carried out in this paper. Nicotinamide (NAM) was chosen as the template and methacrylic acid (MAA) was chosen as the functional monomer. The interaction energy values between NAM and MAA were calculated with methanol, acetonitrile, chloroform and toluene as the porogens, respectively. The subsequent chromatographic evaluation was carried out to give the retention factors and selectivity factors of NAM and its analogues. Good correlations were found to exist between the interaction energies and the retention factors or selectivity factors. When the porogens had poor hydrogen bonding capacity, the interaction energy was mainly influenced by dielectric constant of solvent. And when the porogen had strong capacity in forming hydrogen bond, both the dielectric constant of the solvent and the hydrogen bonding interference affected the forming of the template-monomer complex and the corresponding interaction energy. Aprotic porogen with low dielectric constant was likely to lead to large interaction energy between the template and the functional monomer, resulting in a MIP with better affinity and selectivity. The success of the predicting model provides a experiment-free way for the selection of porogen for given template and functional monomer. (c) 2005 Elsevier B.V. All rights reserved.
机译:基于我们先前工作中提出的计算模型,对成孔剂对MIP亲和力和选择性的影响进行了比较研究。选择烟酰胺(NAM)作为模板,选择甲基丙烯酸(MAA)作为功能单体。以甲醇,乙腈,氯仿和甲苯为成孔剂分别计算了NAM和MAA之间的相互作用能值。进行随后的色谱评估,以给出NAM及其类似物的保留因子和选择性因子。发现相互作用能与保留因子或选择性因子之间存在良好的相关性。当成孔剂的氢键能力差时,相互作用能主要受溶剂介电常数的影响。当成孔剂具有较强的氢键形成能力时,溶剂的介电常数和氢键键合干扰均会影响模板单体配合物的形成及相应的相互作用能。具有低介电常数的非质子成孔剂可能导致模板与功能单体之间的相互作用能大,从而产生具有更好亲和力和选择性的MIP。预测模型的成功为给定模板和功能单体选择致孔剂提供了一种无需实验的方法。 (c)2005 Elsevier B.V.保留所有权利。

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