...
【24h】

Molecularly imprinted photoelectrochemical sensor for fumonisin B-1 based on GO-CdS heterojunction

机译:基于Go-CDS异质结的Fumonisin B-1的分子印迹光电化学传感器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A rapid and ultrasensitive molecularly imprinted photoelectrochemical (MIP-PEC) sensing platform based on ITO electrode modified with GO-CdS heterojunction was prepared for ultrasensitive measure of fumonisin B-1 (FB1). CdS quantum dots (QDs) were combined with a suitable amount of graphene oxide (GO) to form a heterojunction to enhance signal response with accurately calculating energy levels (VB/CB or HOMO/LUMO). The MIP-PEC sensor was successful fabricated after MIP was immobilized on the electrode with the basis of these results. In the phosphate buffer solution (PBS), it was clearly observed that the non-elution MIP-PEC sensor had almost no photocurrent response, which was due to the slower electron transfer speed. When the MIP-PEC sensor is eluted in ethanol, its photocurrent response was significantly restored, that was because the fact that the template molecules were washed away, and electron donors entered the holes and accelerated the electron transfer. Its photocurrent response was reduced because of holes blocked when the MIP-PEC sensor was hatched in the template molecules culture fluid. This phenomenon fully showed that the MIP-PEC sensor can specifically detect the target. Thus, The work has a linear range from 0.01 to 1000 ng mL(-1) with a detection limit of 4.7 pg mL(-1) for FB1. Furthermore, the fabricated MIP-PEC sensor will confirm the actual application.
机译:基于用Go-CdS异质结的基于ITO电极的快速和超敏的分子印迹光电化学(MIP-PEC)感测平台用于Fumonisin B-1(FB1)的超敏感措施。 CDS量子点(QDS)与合适量的石墨烯(GO)组合以形成异质结以增强具有精确计算能量水平的信号响应(VB / CB或HOMO / LUMO)。 MIP-PEC传感器在将MIP固定在电极上以基于这些结果的基础上成功制造。在磷酸盐缓冲溶液(PBS)中,清楚地观察到非洗脱MIP-PEC传感器几乎没有光电流响应,这是由于电子转移速度较慢。当MIP-PEC传感器在乙醇中洗脱时,其光电流响应显着恢复,这是模板分子被洗掉的事实,并且电子供体进入孔并加速电子转移。当MIP-PEC传感器在模板分子培养液中阴影时阻断,其光电流响应减小。这种现象完全显示了MIP-PEC传感器可以专门检测目标。因此,该工作的线性范围为0.01至1000ng ml(-1),其用于FB1的4.7pg ml(-1)的检测限。此外,制造的MIP-PEC传感器将确认实际应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号