High-selective and sensitive electrochemical sensing of Norfloxacin and its metabolism by using mole

来源 :中国化学会第十二届全国微全分析系统学术会议、第七届全国微纳尺度生物分离分析学术会议、第七届国际微流控学学术论坛 | 被引量 : 0次 | 上传用户:tsy99
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  In this work,a 3D-framework of functionalized multi-walled carbon nanotubes(fMWCNTs)decorated with molecularly imprinted polymer(MIP),has been fabricated to achieve high-selective and sensitive electrochemical molecular sensing.The cavity networks of MIP layer from Norfloxacin(NFX)molecules offers simultaneous identification and quantification of NFX; and thus,ensures its high selectivity [1].The porous structure of fMWCNT 3D-framwork effectively increases the specific surface area,and the copolymer of fMWCNTs and MIP shows synergistic effect for electrocatalytic reaction of NFX at the modified sensor.Under optimized conditions,the fabricated sensors show wide linear detection ranges of 0.003-0.391 μM and 0.391–3.125 μM(Fig.1),low limit of determination(LOD)of 1.58 nM,and excellent selectivity in discriminating NFX according to its structural analogues and possible interferences.Precise and fast quantification of NFX in pharmaceutical formulations and rat plasma samples suggests its simplicity and reliability.Considering the advantages of easy fabrication,and selective and sensitive detection,such sensors with different types of MIPs would be widely applied in the fields of pharmaceutical analysis,and environmental and clinical therapeutic drug monitoring [2,3].Additionally,the schematic graphical is shown in Fig.2.
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