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引用本文:覃燕平,黄学艺,余会成,谭学才,唐响妹,黄雪花.新诺明分子印迹传感器的制备及应用研究[J].中国现代应用药学,2014,31(5):528-534.
QIN Yanping,HUANG Xueyi,YU Huicheng,TAN Xuecai,TANG Xiangmei,HUANG Xuehua.Preparation and Its Application of Sulfamethoxazole Molecularly Imprinted Polymer Sensor[J].Chin J Mod Appl Pharm(中国现代应用药学),2014,31(5):528-534.
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新诺明分子印迹传感器的制备及应用研究
覃燕平, 黄学艺, 余会成, 谭学才, 唐响妹, 黄雪花
广西民族大学化学化工学院,广西林产化学与工程重点实验室,南宁 530006
摘要:
目的 以吡咯为单体在玻碳电极表面电聚合一种新诺明分子印迹膜。方法 研究了聚吡咯、新诺明浓度、扫描圈数及扫描速率对印迹膜制备的影响,并探讨检测液的pH值、乙腈与水的体积比对响应电流的影响。采用循环伏安法及电化学交流阻抗技术对分子印迹膜进行表征。结果 在最佳实验条件下新诺明的浓度在2.50×10-5~7.50×10-4 mol·L-1及7.50×10-4~2.00×10-3 mol·L-1内时,差分脉冲伏安法的峰电流响应值呈现线性关系(线性相关系数分别为0.995 8和0.996 7),检出限(S/N=3)为2.80×10-6 mol·L-1。结论 印迹电极也显示出较好的选择性、重复性、稳定性。将此印迹传感器对复方新诺明药品中磺胺甲噁唑的含量进行了测定,回收率在94.2%~105.0%。
关键词:  分子印迹聚合物  电聚合  新诺明  聚吡咯
DOI:
分类号:R917
基金项目:广西民族大学研究生创新项目(gxun-chx2013t19);广西高校大学生创新创业训练计划项目(2013CX051)
Preparation and Its Application of Sulfamethoxazole Molecularly Imprinted Polymer Sensor
QIN Yanping, HUANG Xueyi, YU Huicheng, TAN Xuecai, TANG Xiangmei, HUANG Xuehua
Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, School of Chemistry and Chemical Engineering, Guangxi University for Nationalities, Nanning 530006, China
Abstract:
OBJECTIVE To electroploymerize a molecularly imprinted polymer(MIP) film for sulfamethoxazole detection on a glassy carbon electrode by the use of pyrrole monomer. METHODS The effects of sulfamethoxazole concentration, polypyrrole concentration, number of scan cycle and scan rate on the MIP film were investigated respectively. The effects of pH value and acetonitrile-water ratio of detection liquid on response current were also explored. The imprinted film was characterised by electrochemical impedance spectroscopy(EIS) and cyclic voltammetry (CV). RESULTS The results indicated the DPV peak current showed a linear dependence on the sulfamethoxazole concentration in the ranges of 2.50×10-5-7.50×10-4 mol·L-1 and 7.50×10-4-2.00×10-3 mol·L-1 of sulfamethoxazole(each correlation coefficient of 0.995 8 and 0.996 7, respectively) with the detection limit (S/N=3) of 2.80×10-6 mmol·L-1, under the optimal experimental conditions. CONCLUSION This MIP film electrode also displayed good selectivity and reproducibility and stability. The prepared sensor was applied to the determination of sulfamethoxazle in Paediatric Compound Sulfamethoxazole Tablet samples with recovery ranging from 94.2% to 105.0%.
Key words:  molecularly imprinted polymer  electropolymerization  sulfamethoxazole  pyrrole
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