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Development and characterization of molecularly imprinted polymer microspheres for the selective detection of kaempferol in traditional Chinese medicines

机译:分子印迹聚合物微球的开发与表征,用于中药中山fer酚的选择性检测

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In the present work, microwave heating was applied to the preparation of kaempferol molecularly imprinted polymer (MIP) microspheres, resulting in much shorter polymerization times. The MIP microspheres were demonstrated with a narrow diameter distribution of 6-9 μm and a spherical shape. The average diameter of 50 microspheres was 8 nm. The results of the morphology observation, the static adsorption performance and the selectivity performance of the MIP microspheres were all superior to that of the MIPs prepared by conventional heating. The imprinting efficiency of the MIP microspheres was 5.0 and 4.2, which were prepared by microwave heating and conventional heating respectively. MIPs prepared by microwave heating were used as sorbent for solid phase extraction and the elution efficiency of kaempferol was 93.1%. The MIPs coupled with solid phase extraction were used for the extraction of kaempferol from Portulaca oleracea L. and Alpinia officinarum. The regression equation was A =-76437.921 + 1.619 x 10~7 C with correlation coefficients of R = 0.9997. The linearity range was 4.5-200 mg L~(-1) and the limit of detection was 8.0 μg g~(-1). The recoveries were 90.2% and 88.0%> and the RSDs were 1.21% and 1.18% respectively. The results indicated that the proposed MIPs can be favorably used for the extraction of kaempferol in traditional Chinese medicines.
机译:在目前的工作中,微波加热被应用于山emp酚分子印迹聚合物(MIP)微球的制备,从而大大缩短了聚合时间。证明了MIP微球具有6-9μm的窄直径分布和球形。 50个微球的平均直径为8 nm。 MIP微球的形态观察,静态吸附性能和选择性性能均优于常规加热制备的MIP。 MIP微球的压印效率分别为5.0和4.2,分别通过微波加热和常规加热制备。通过微波加热制备的MIP用作吸附剂进行固相萃取,山emp酚的洗脱效率为93.1%。 MIP与固相萃取相结合,用于从马齿Port和高良姜中提取山ol酚。回归方程为A = -76437.921 + 1.619 x 10〜7 C,相关系数为R = 0.9997。线性范围为4.5-200 mg L〜(-1),检出限为8.0μgg〜(-1)。回收率为90.2%和88.0%,相对标准偏差分别为1.21%和1.18%。结果表明,所提出的MIPs可用于中药中山of酚的提取。

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