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Selective extraction of organophosphorous pesticides in plasma by magnetic molecularly imprinted polymers with the aid of computational design

机译:磁性分子印迹聚合物借助计算设计选择性萃取血浆中的有机磷农药

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The design, synthesis, characterization, and applicability of magnetic molecularly imprinted polymer (MIP-APTES-MNP) as a selective sorbent for the extraction of diazinon from plasma samples were investigated. To design more sophisticated polymers, appropriate monomer, crosslinker, polymerization solvent, and ratio of monomer to template and crosslinker were selected by a methodology based on density functional theory calculations. The sorbent particles were characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), thermogravimetric analysis (TGA), vibrating sample magnetometry (VSM) and X-ray diffraction (XRD). The extraction of a few organophosphates, including dimethoate, dichlorvose, malathion, fosalon, diazinon, chlorpyrifos, and ethion, were evaluated to estimate possible interfering effects. Equilibrium isotherms and the kinetics of extraction were studied to reveal the mechanism and rate of adsorption. A UHPLC-UV method was also developed to monitor OPPs on a short C18 column using H2O?:?acetonitrile as mobile phase during isocratic and gradient elution steps. The synthesis of the polymer was carried out under deoxygenated condition at molar ratio 1?:?5?:?18 of template?:?monomer?:?cross-linker. Sorbent characterization results showed that the particles were of nanosize range and adsorption was best fitted on Langmuir model with pseudo-first-order kinetics. The maximum enrichment capacity, Langmuir constant, and limit of detection for diazinon were calculated as 5, 0.937 mg L?1, and 5 μg L?1, respectively. The highest and lowest saturated adsorption capacities of the sorbent for OPPs were found to be 92% and 23% for diazinon and ethion, respectively.
机译:研究了磁性分子印迹聚合物(MIP-APTES-MNP)作为选择性吸附剂从血浆样品中提取二嗪农的设计,合成,表征和适用性。为了设计更复杂的聚合物,通过基于密度泛函理论计算的方法选择合适的单体,交联剂,聚合溶剂以及单体与模板和交联剂的比例。吸附剂颗粒通过傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),热重分析(TGA),振动样品磁力法(VSM)和X射线衍射(XRD)进行表征。对几种有机磷酸盐的提取进行了评估,包括乐果,双氯糖,马拉硫磷,氟苯酮,二嗪农,毒死rif和乙硫磷,以评估可能的干扰作用。研究了平衡等温线和萃取动力学,以揭示吸附的机理和速率。还开发了一种UHPLC-UV方法,在等度和梯度洗脱步骤中,使用H2O3 :?乙腈作为流动相,在短的C18色谱柱上监测OPP。聚合物的合成是在脱氧条件下,以模板α∶单体①∶β交联剂的摩尔比为1∶∶5∶5∶18的方式进行的。吸附剂表征结果表明,该颗粒为纳米级,吸附最适合具有拟一级动力学的Langmuir模型。计算出的最大富集能力,朗缪尔常数和二嗪农的检出限分别为5、0.937 mg L?1和5μgL?1。发现OPP吸附剂的最高和最低饱和吸附容量分别为二嗪农和乙硫醚,分别为92%和23%。

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