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Synthesis and characterization of molecularly imprinted polymer films.

机译:分子印迹聚合物薄膜的合成与表征。

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The solution-phase synthesis was developed for preparing molecularly imprinted polymers (MIPs) against Boc-L-Trp using a binary monomer system. Methacrylic acid (MAA) and 2-vinylpyridine (2-VPy) were used as the two functional monomers with ethylene glycol dimethacrylate (EGDMA) as the crosslinker. Polymers prepared from two monomers showed improved binding strength and recognition capabilities compared to polymers that were prepared using a single monomer. The synergistic effect on binding was most pronounced for polymers prepared from a starting MAA:2-Vpy molar ratio of about 1:5. A correlation was developed based on molecular interaction scales to relate the template-MIP binding strength to MIP composition.; Experimental data demonstrated the successful preparation of ultrathin (10 nm), surface-confined, molecularly imprinted polymer (MIP) films on model gold substrates using atom transfer radical polymerization (ATRP). 2-Vinylpyridine (2-Vpy) was investigated as the functional monomer and ethylene glycol dimethacrylate (EGDMA) was the crosslinking monomer. Fluorescently-labeled N,N' -didansyl-L-cystine and N,N'-didansyl-L-lysine were used as the template molecules to form the MIPs. Spectroscopic and ellipsometric results are presented that follow film formation and growth rates. Results are also presented from fluorescence experiments used to quantify and compare the adsorption capacities of MIP surface films and non-imprinted (NIP) control films. MIP films exhibited higher binding capacities than the control NIP films at all solution concentrations of N,N'-didansyl-L-cystine and N,N'-didansyl-L-lysine. Selectivity studies showed that the MIPs display some cross-reactivity between these two molecules. A selectivity coefficient of 1.13 was achieved for MIP surfaces prepared against N,N'-didansyl-L-lysine; a value of 1.51 was observed for MIP surfaces prepared against N,N'-didansyl-L-cystine.; Imprinted polymers were grafted successfully onto silica gel via ATRP. Experimental binding kinetics for the MIP-SG (Silica Gel) materials demonstrated improved mass transfer properties than MIP prepared by solution phase synthesis. In addition, the column packed with MIP-SG showed higher column efficiency and better resolution for the enantiomers than that packed with a conventional MIP. When Boc-L-Trp was used as the template molecule, the column packed with the resulting polymer retained the Boc-L-Trp to longer elution time than the Boc-D-Trp. This order of elution was switched when Boc-D-Trp was used as template.
机译:开发了溶液相合成法,以使用二元单体系统制备针对Boc-L-Trp的分子印迹聚合物(MIP)。甲基丙烯酸(MAA)和2-乙烯基吡啶(2-VPy)被用作两个功能单体,乙二醇二甲基丙烯酸酯(EGDMA)作为交联剂。与使用单一单体制备的聚合物相比,由两种单体制备的聚合物显示出更高的结合强度和识别能力。对于由约1:5的起始MAA:2-Vpy摩尔比制备的聚合物,对结合的协同作用最明显。基于分子相互作用量表开发了相关性,以使模板-MIP结合强度与MIP组成相关。实验数据表明,使用原子转移自由基聚合(ATRP)在模型金基底上成功制备了超薄(<10 nm),表面受限,分子印迹聚合物(MIP)膜。研究了2-乙烯基吡啶(2-Vpy)作为功能单体,乙二醇二甲基丙烯酸酯(EGDMA)是交联单体。荧光标记的N,N'-二丹酰基-L-赖氨酸和N,N'-二丹酰基-L-赖氨酸被用作模板分子以形成MIP。提出了遵循膜形成和生长速率的光谱和椭圆偏振结果。还提供了用于定量和比较MIP表面膜和非压印(NIP)对照膜的吸附能力的荧光实验结果。在所有溶液浓度的N,N'-二丹酰基-L-胱氨酸和N,N'-二丹酰基-L-赖氨酸的所有溶液浓度下,MIP膜均显示出比对照NIP膜更高的结合能力。选择性研究表明,MIP在这两个分子之间显示出某些交叉反应性。针对N,N'-二丹酰基-L-赖氨酸制备的MIP表面的选择性系数为1.13;对于N,N′-二丹酰基-L-胱氨酸制备的MIP表面的值为1.51。印迹聚合物通过ATRP成功接枝到硅胶上。与溶液相合成制备的MIP相比,MIP-SG(硅胶)材料的实验结合动力学表现出更高的传质性能。此外,与常规MIP相比,填充有MIP-SG的色谱柱显示出更高的柱效和对映体的更好分离度。当使用Boc-L-Trp作为模板分子时,填充有所得聚合物的色谱柱保留Boc-L-Trp的洗脱时间要比Boc-D-Trp更长。当Boc-D-Trp用作模板时,切换此洗脱顺序。

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