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Influence of polymerization temperature on the molecular recognition of imprinted polymers

机译:聚合温度对印迹聚合物分子识别的影响

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This paper aimed at investigating the influence of polymerization temperature on the molecular recognition of molecularly imprinted polymers (MIPs) based on multiple non-covalent interactions. 3-L-Phenylalanylaminopyridine (3--PheNHPy) imprinted polymers were prepared using azobisnitriles as either thermal initiators or photoinitiators at various temperatures of 10, 40 and 60 ℃, respectively. These polymers were subsequently evaluated in the high-performance liquid chromatographic (HPLC) mode for enantioselectivity. An unexpected result shows that polymer prepared at 40 ℃ has the highest enantioselectivity, but not the polymer prepared at lower temperature of 10 ℃. Further, the effect of elution temperature and sample load on the selectivity of polymers was investigated in detail. In order to get a better understanding of the "exception", the influence of polymerization temperature on the polymerization extent and polymer morphology was studied by FT-IR spectrum test, cross-polarization magic angle spinning (CP-MAS) ~(13)C NMR spectra experiment and pore analysis. Based on these results we attribute this "exception" to that there is a tradeoff between the extent of polymerization and stabilization of the template–functional monomer complexes. And an optimal polymerization temperature can be found for each combination of template and monomer.
机译:本文旨在研究基于多种非共价相互作用的聚合温度对分子印迹聚合物(MIP)分子识别的影响。使用偶氮二腈作为热引发剂或光引发剂分别在10、40和60℃的不同温度下制备了3-L-苯丙氨酰氨基吡啶(3--PheNHPy)印迹聚合物。随后在高效液相色谱(HPLC)模式下评估这些聚合物的对映选择性。出乎意料的结果表明,在40℃制备的聚合物具有最高的对映选择性,但在10℃的较低温度下制备的聚合物却没有。此外,详细研究了洗脱温度和样品量对聚合物选择性的影响。为了更好地理解“例外”,通过FT-IR光谱测试,交叉极化幻角纺丝(CP-MAS)〜(13)C研究了聚合温度对聚合程度和聚合物形态的影响。 NMR光谱实验和孔隙分析。根据这些结果,我们将此“例外”归因于在聚合程度和模板功能单体复合物的稳定化之间存在权衡。对于模板和单体的每种组合都可以找到最佳的聚合温度。

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