Graduate Institute of Applied Science and Technology, National Taiwan University of Science and Technology, Taipei, Taiwan.
Advanced Membrane Materials Center, National Taiwan University of Science and Technology, Taipei, Taiwan.
Mikrochim Acta. 2021 Jul 24;188(8):271. doi: 10.1007/s00604-021-04910-1.
Bentazone (BEZ) is one of the utmost selective problematic contact-past herbicide with high toxicity for humans owing to feasible contamination of surface and ground water. In this work, an electrochemical sensor has been developed for the sensitive detection of BEZ, based on hierarchically porous three-dimensional (3D) carbon superstructures (CS)-modified electrodes. The CSs (namely, CS, CS, CS, and CS) were prepared by the pyrolysis process from organic porous polyacrylonitrile (PAN) superstructure particles (namely, PAN, PAN, PAN, and PAN) obtained by free radical polymerization method using different solvents (hexane, pyridine, acetonitrile, and also no solvent). The assembly with the working electrode of CSs causes the electrocatalytic BEZ oxidation by rapid electron transfer compared to the PAN superstructures and bare electrodes. Intriguingly, compared to all electrodes, CS-modified electrode showed the superior electrochemical detection of BEZ at a working potential of 0.99 V (vs. Ag/AgCl), very low detection limit (0.002 μM), wide dynamic linear range (0.03 to 200 μM), high sensitivity (9.95 μA μM cm), and excellent reliability. The advanced sensors displayed an intensification of oxidation peak current of BEZ with high selectivity, remarkable sensitivity, and reproducibility for BEZ detection and received satisfactory outcomes designating the application of sensors for the determination of BEZ in river water samples.
苯达松(BEZ)是一种最具选择性的问题接触性除草剂,对人类具有高毒性,因为它可能会污染地表水和地下水。在这项工作中,基于分层多孔三维(3D)碳超结构(CS)修饰电极,开发了一种用于 BEZ 灵敏检测的电化学传感器。CSs(即 CS、CS、CS 和 CS)是通过热解工艺从自由基聚合方法获得的有机多孔聚丙烯腈(PAN)超结构粒子(即 PAN、PAN、PAN 和 PAN)制备的,使用不同的溶剂(己烷、吡啶、乙腈和无溶剂)。与 PAN 超结构和裸电极相比,CSs 与工作电极的组装导致 BEZ 电催化氧化的快速电子转移。有趣的是,与所有电极相比,CS 修饰电极在工作电位为 0.99 V(相对于 Ag/AgCl)时表现出对 BEZ 的优异电化学检测,非常低的检测限(0.002 μM),宽动态线性范围(0.03 至 200 μM),高灵敏度(9.95 μA μM cm)和出色的可靠性。该高级传感器对 BEZ 的氧化峰电流表现出增强的选择性、显著的灵敏度和重现性,用于 BEZ 的检测,并获得了令人满意的结果,指定了传感器在河流水样中 BEZ 测定中的应用。