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Enantioselective determination of S-ornidazole by using carbon paste electrode modified with boron-embedded conductive copolymer-polysiloxane-based molecularly imprinted hybrid film

机译:用硼嵌入式导电共聚物 - 聚硅氧烷的分子印迹杂交膜改性碳糊电极对S-丙唑的映射测定

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Highly selective determination of enantiomers by electrochemical sensors with simple recognition elements is of great interest in pharmaceutics, biochemistry and medical fields. The present work developed an innovative electrochemical sensor, which based on boron-embedded molecularly imprinted hybrid film (B-MIHF) modified carbon paste electrode (CPE), for enantioselective determination of S-ornidazole (S-ONZ). A boron-embedded conductive copolymer was firstly electro polymerized on carbon paste electrode (CPE), and then molecularly imprinted polysiloxanes (MIP) were hydrolyzed and condensed over the conductive copolymer layer via a sol-gel process. The as-prepared B-MIHF, comprised the advantages of boron-embedded conductive copolymer and molecularly imprinted polysiloxanes, could not only implement direct signal transformation between imprinted cavities and sensing elements, but show amazing selectivity to template S-ornidazole. Above all, the introduction of coordinate interaction formed between trisubstituted boron atoms embedded in B-MIHF matrix and nitrogen atoms of template endow the sensor with intensive enantioselectivity. Under optimum experiments conditions, the reduction peak currents of S-ONZ by differential pulse voltammetry were linear to S-ONZ concentrations in the range from 6.0 x 10(8) to 1.0 x 10(6) mol L-1 and 1.0 x 10(-6) to 3.5 x 10(4) mol L-1 with a detection limit of 1.1 x 10(-8) mol L-1. The B-MIHF-based sensor has been successfully applied for the determination of S-ONZ in pharmaceutical and biological samples with good precision (RSD 2.25-4.11%) and acceptable recoveries (96.00-108.00%). (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过具有简单识别元素的电化学传感器对对映体的高度选择性测定对药剂,生物化学和医疗领域具有很大的兴趣。本工作开发了一种创新的电化学传感器,其基于硼嵌入的分子印迹杂交膜(B-MIHF)改性碳浆料电极(CPE),用于对S-甲唑(S-ONZ)进行对映选择性的测定。首先在碳浆电极(CPE)上聚合硼嵌入的导电共聚物,然后通过溶胶 - 凝胶法水解分子印迹聚硅氧烷(MIP)并在导电共聚物层上冷凝。所制备的B-MIHF,包含硼的嵌入的导电共聚物的优点和分子印迹聚硅氧烷,不仅可以实现印迹空腔和传感元件之间的直接信号变换,但展现出惊人的选择性模板S-奥硝唑。最重要的是,在嵌入B-MIHF基质中嵌入的三取代的硼原子与模板氮原子之间形成的坐标相互作用赋予传感器,以强烈的对映选择性。在最佳实验条件下,差分脉冲伏安法的S-ONZ的还原峰值电流在6.0×10(8)至1.0×10(6)mol L-1和1.0 x 10的范围内的S-ONZ浓度的线性。 -6)至3.5×10(4)摩尔L-1,检测限为1.1×10(-8)mol L-1。基于B-MIHF的传感器已经成功地应用于药物和生物样品中的S-ONZ,具有良好的精度(RSD 2.25-4.11%)和可接受的回收率(96.00-108.00%)。 (c)2017 Elsevier Ltd.保留所有权利。

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