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1.延安大学石油工程与环境工程学院 延安市环境检测与修复重点实验室,延安 716000
2.北京理工大学化学与化工学院,北京 102488
* 王建(1982-),男,博士,副教授,主要从事分子识别相关研究。E-mail:wangjian595573@sohu.com
纸质出版日期:2023-09-20,
收稿日期:2023-03-03,
修回日期:2023-00-00,
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豆瑞, 王建, 董晓, 王丹, 石雨, 雷泽波, 王越. 模板属性对植物生长调节剂分子印迹效果的影响[J]. 高分子通报, 2023,36(9):1200-1215.
DOU Rui, WANG Jian, DONG Xiao, WANG Dan, SHI Yu, LEI Ze-bo, WANG Yue. Effect of Template Properties on Molecular Imprinting Effect of Plant Growth Regulators[J]. Polymer Bulletin, 2023,36(9):1200-1215.
豆瑞, 王建, 董晓, 王丹, 石雨, 雷泽波, 王越. 模板属性对植物生长调节剂分子印迹效果的影响[J]. 高分子通报, 2023,36(9):1200-1215. DOI: 10.14028/j.cnki.1003-3726.2023.09.009.
DOU Rui, WANG Jian, DONG Xiao, WANG Dan, SHI Yu, LEI Ze-bo, WANG Yue. Effect of Template Properties on Molecular Imprinting Effect of Plant Growth Regulators[J]. Polymer Bulletin, 2023,36(9):1200-1215. DOI: 10.14028/j.cnki.1003-3726.2023.09.009.
以植物生长调节剂为模板,甲基丙烯酸(MAA)为功能单体,乙二醇二甲基丙烯酸酯(EGDMA)为交联剂,采用非共价键沉淀聚合法合成了10种单模板分子印迹聚合物(SMIP)和8 种混合模板分子印迹聚合物(MMIP)。采用吸附实验研究了模板的偶极矩、油水分配系数(lg
P
)、酸碱电离常数(p
K
a
)、氢键受体数、极性表面积和摩尔体积与SMIP印迹效果的关系。通过分子动力学模拟研究了MMIP全组分预聚合混合物,揭示了混合模板印迹选择性识别的机理。结果表明,模板的偶极矩、lg
P
和p
K
a
与4 ℃ UV引发聚合的SMIP的印迹因子(IF)、特异性参数(SP)和结合容量(Q)呈正相关,模板的lg
P
和p
K
a
与60 ℃热引发聚合制备的SMIP的IF、SP和
Q
呈正相关。以4-氯苯氧乙酸、烯效唑和1-萘乙酸为混合模板,4 ℃ UV引发聚合制备的MMIP产生了比单模板印迹更好的协同印迹效果,即使每种模板的浓度都仅为单独印迹时的1/3。该MMIP对目标物4-氯苯氧乙酸、烯效唑、1-萘乙酸、多效唑、三唑酮和噻苯隆具有最佳选择性,结合容量分别是非印迹聚合物(NIP)的1.77、1.78、2.79、1.62、2.88和5.39倍,可用于这些植物生物调节剂(PGR)的同时提取与分离。预组装体系中,同种模板之间和不同种模板之间都能形成预组装复合物,一些模板之间的结合会阻碍这些模板与功能单体的结合,导致印迹效果减弱,而另一些模板之间的结合能够增强他们与功能单体的结合,使印迹效果增强。
Ten single-template molecularly imprinted polymers (SMIP) and eight mixed-template molecularly imprinted polymers (MMIP) were synthesized by non-covalent bond precipitation polymerization using plant growth regulator as template
methacrylic acid (MAA) as functional monomer and ethylene glycol dimethyl acrylate (EGDMA) as crosslinking agent. The effects of the dipole moment
oil-water partition coefficient (lg
P
)
acid-base ionization constant (p
K
a
)
H bond acceptors
polar surface area and molar volume of the template on the imprinting effect was studied. Molecular dynamics simulations of all-component prepolymerization mixtures for MMIP have been employed to investigate the mechanistic basis for template selective recognition in these systems. The results showed that the dipole moment
lg
P
and p
K
a
of the template were positively correlated with the imprinting factor (IF)
specificity parameters (SP) and binding capacity (
Q
) of the SMIP synthesized by UV-initiated polymerization at 4 ℃
and the lg
P
and p
K
a
of the template were positively correlated with the IF
SP and Q of the SMIP prepared by thermal initiation polymerization at 60 ℃. MMIP synthesized by UV-initiated polymerization at 4 ℃ using 4-chlorophenoxyacetic acid
uniconazole and 1-naphthylacetic acid as mixed templates obtained better co-imprinting effect than single template imprinting
even though the concentration of each template was only 1/3 of that of single imprinting. Which has the best selectivity for 4-chlorophenoxyacetic acid
uniconazole
1-naphthylacetic acid
paclobutrazol
triadimefon and thiazolone. The binding capacity of the MMIP for these target PGRs is 1.77
1.78
2.79
1.62
2.88 and 5.39 times of that of corresponding non-imprinted polymer (NIP)
respectively
and the total binding capacity is 10.93 μmol/g
which can be used for the extraction and separation of these PGRs. In molecular imprinting preassembly systems
complexes can be formed not only between the same template but also between different templates. The binding between some templates can hinder their binding with functional monomers
resulting in a weakened imprinting effect. The combination of other templates can enhance their binding with functional monomer
so as to enhance the imprinting effect.
植物生长调节剂分子印迹模板属性混合模板印迹效果
Plant growth regulatorMolecular imprintingTemplate propertiesMixed-templateImprinting effect
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