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Preparation and performance valuation of high selective molecularly imprinted polymers for malachite green

机译:孔雀石绿高选择性分子印迹聚合物的制备及性能评价

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Molecular imprinting is a technology that facilitates the production of artificial receptors toward compounds of interest. In this study, we prepared a series of molecularly imprinted polymers (MIPs) by precipitation polymerization for the purpose of binding specifically to malachite green (MG). The presence of monomer-template solution complexes in non-covalent MIPs systems had been verified by UV-spectrometric detection and molecular dynamics simulations. The synthesized parameters were, respectively, optimized and the optimal conditions for the efficient adsorption property were as follows: template: MG, 1 mmol; functional monomer: methacrylic acid (MAA), 8 mmol; cross-linker: ethylene glycol dimethacryllate, 16 mmol; and porogen: acetonitrile, 30 mL. Fourier transform infrared spectroscopy and nitrogen adsorption experiments were used to characterize the MIPs. Scatchard analysis was used for estimation of the dissociation constants and maximum amounts of binding sites. The polymer based on MAA had two classes of heterogeneous binding sites characterized by two values of K _D and B _(max): K _D = 14.10 μmol L~(-1) and B_ (max) = 1.37 μmol g~(-1) for the higher affinity binding sites, and K _D = 384.62 μmol L~(-1) and B _(max) = 24.77 μmol g~(-1) for the lower affinity binding sites. The specificity of MIPs on SPE column was evaluated by rebinding the other structurally similar compounds. The results indicated that the imprinted polymers exhibited an excellent stereo-selectivity toward MG.
机译:分子印迹是一种有助于产生针对目标化合物的人工受体的技术。在这项研究中,我们通过沉淀聚合制备了一系列分子印迹聚合物(MIP),目的是与孔雀石绿(MG)特异性结合。非共价MIPs系统中单体-模板溶液配合物的存在已通过紫外光谱检测和分子动力学模拟得到验证。分别对合成参数进行了优化,有效吸附性能的最佳条件为:模板:MG,1 mmol;功能单体:甲基丙烯酸(MAA),8 mmol;交联剂:乙二醇二甲基丙烯酸酯,16mmol。和致孔剂:乙腈,30 mL。傅里叶变换红外光谱和氮吸附实验被用来表征MIPs。斯卡查德分析用于估计解离常数和最大结合位点。基于MAA的聚合物具有两类异质结合位点,其特征在于K _D和B _(max)的两个值:K _D = 14.10μmolL〜(-1)和B_(max)= 1.37μmolg〜(-1)对于高亲和力结合位点,K _D = 384.62μmolL〜(-1),对于较低亲和力结合位点,B _(max)= 24.77μmolg〜(-1)。通过重新结合其他结构相似的化合物来评估SPE柱上MIP的特异性。结果表明,印迹的聚合物表现出对MG的优异的立体选择性。

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