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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Molecular imprinted material prepared by novel surface imprinting technique for selective adsorption of pirimicarb
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Molecular imprinted material prepared by novel surface imprinting technique for selective adsorption of pirimicarb

机译:通过新型表面压印技术制备的分子印迹材料,用于选择性吸附吡虫威

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摘要

In this paper,a molecular imprinted material with high performance for recognizing pirimicarb,which is a kind of carbamate pesticide,was prepared by adopting the novel surface molecular imprinting technique put forward by us previously.Firstly,the functional macromolecule poly-(methacrylic acid)(PMAA)was grafted on the surface of silica gel particles in the manner of"grafting from"using 3-methacryloxypropyl trimethoxysilane(MPS)as an intermediate,and the grafted particle PMAA/SiO2 was formed.Afterwards,the molecular imprinting was carried out towards the macromolecule PMAA grafted on the surface of silica gel particles using pirimicarb as template and ethylene glycol diglycidyl ether(EGGE)as crosslinking agent via the intermolecular hydrogen bond and electrostatic interaction,and pirimicarb imprinted material MIP-PMAA/SiO2 was obtained.The combining characteristic of MIP-PMAA/SiO2 for pirimicarb was studied profoundly with static method.The experimental results show that the surface-imprinted material MIP-PEI/SiO2 has excellent combining affinity and recognition selectivity for the template molecules of pirimicarb.Before imprinting,PMAA/SiO2 has greater adsorption capacities for pirimicarb as well as for the contrast substances,atrazine and propoxur,whose structures are similar to pirimicarb,and the selectivity coefficients of PMAA/SiO2 for pirimicarb with respect to atrazine and propoxur are only 1.523 and 0.612,respectively.However,after imprinting,the combining capacities of MIP-PMAA/SiO2 towards atrazine and propoxur decrease remarkably,whereas that of MIP-PMAA/SiO2 for pirimicarb still remains higher.The coefficients of MIP-PMAA/SiO2 for pirimicarb with respect to atrazine and propoxur were enhanced greatly,and they are 12.20 and 14.15,respectively.Besides,MIP-PMAA/SiO2 adsorbing pirimicarb in a saturated state has fine elution and reuse properties.
机译:本文采用以前提出的新型表面分子印迹技术,制备了一种氨基甲酸酯类农药,用于识别吡虫威的高性能分子印迹材料。首先,功能性高分子聚甲基丙烯酸以3-甲基丙烯酰氧基丙基三甲氧基硅烷(MPS)为中间体,以“接枝”的方式将(PMAA)接枝在硅胶颗粒表面,形成接枝颗粒PMAA / SiO2。然后进行分子印迹以吡虫威为模板,以乙二醇二缩水甘油醚(EGGE)为交联剂,通过分子间氢键和静电作用,向硅胶颗粒表面接枝大分子PMAA,制得了吡虫威印迹材料MIP-PMAA / SiO2。通过静态方法深入研究了吡虫威的MIP-PMAA / SiO2特性。印刷材料MIP-PEI / SiO2对吡虫威的模板分子具有极好的结合亲和力和识别选择性。在压印之前,PMAA / SiO2对吡虫威和对比物质阿特拉津和丙氧嘧啶具有更大的吸附能力,其结构类似于吡虫威和吡虫威的PMAA / SiO2对阿特拉津和丙氧磷的选择性系数分别仅为1.523和0.612。但是,印记后,MIP-PMAA / SiO2对at去津和丙氧磷的结合能力显着下降,而吡虫威的MIP-PMAA / SiO2仍保持较高水平。吡虫威的MIP-PMAA / SiO2相对于at去津和丙草胺的系数分别大大提高,分别为12.20和14.15。饱和状态具有良好的洗脱和重用特性。

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