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A fluorescence switch sensor for detection of virginiamycin based on graphene oxide-supported carbon quantum dots and molecularly imprinted polymer

机译:一种基于氧化石墨烯负载的碳量子点和分子印迹聚合物的弗吉尼亚霉素检测荧光开关传感器

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A fluorescence switch sensor was developed for the detection of virginiamycin, which was based on graphene oxide-supported carbon quantum dots (GO/C-dots) as the signal indicator and molecularly imprinted polymer (MIP) as the recognition template. First, GO/C-dots were prepared on the surface of an indium tin oxide (ITO) electrode. Then, MIP with virginiamycin as the template molecule and o-aminophenol as the functional monomer were synthesized on the surface of the GO/C-dots-modified ITO electrode. After removal of virginiamycin from the MIP, a sensor for specific adsorption of virginiamycin was obtained. The GO/C-dots generated a bright fluorescent signal, while virginiamycin quenched this fluorescence. Therefore, elution and adsorption of virginiamycin by the MIP acted as a switch to control fluorescence intensity. The obtained sensor has a high sensitivity and good selectivity, with a detection limit of 1.56 × 10?11 mol L?1 for virginiamycin.
机译:开发了一种用于检测维吉霉素的荧光开关传感器,该传感器基于氧化石墨烯负载的碳量子点(GO / C点)作为信号指示剂,并以分子印迹聚合物(MIP)作为识别模板。首先,在铟锡氧化物(ITO)电极的表面上制备GO / C点。然后,在GO / C点修饰的ITO电极表面合成了以维吉尼亚霉素为模板分子,以 o -氨基酚为功能单体的MIP。从MIP中除去维吉尼亚霉素后,获得用于维吉尼亚霉素特异性吸附的传感器。 GO / C点产生明亮的荧光信号,而维吉尼亚霉素则使该荧光猝灭。因此,通过MIP洗脱和吸附维吉尼亚霉素可作为控制荧光强度的开关。所得传感器灵敏度高,选择性好,检出限为1.56×10 ?11 mol L ?1 < / small>用于维吉尼亚霉素。

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