Pushparajah Suthira, Hasegawa Shinichi, Pham Tien Song Hiep, Shafiei Mahnaz, Yu Aimin
School of Science, Computing, and Engineering Technology, Swinburne University of Technology, Hawthorn, VIC 3122, Australia.
Materials (Basel). 2023 Dec 13;16(24):7622. doi: 10.3390/ma16247622.
In recent years, there has been a significant interest in the advancement of electrochemical sensing platforms to detect pesticides with high sensitivity and selectivity. Current research presents a novel approach utilising platinum nanoparticles (NPs) and reduced graphene oxide deposited on a glassy carbon electrode (Pt-rGO/GCE) for direct electrochemical measurement of carbendazim (CBZ). A straightforward one-step electrodeposition process was applied to prepare the Pt-rGO sensing platform. The incorporation of conductive rGO nanosheets along with distinctive structured Pt NPs significantly enhanced the effective electrode surface area and electron transfer of CBZ. Additionally, when exposed to 50 µM CBZ, Pt-rGO/GCE exhibited a higher current response compared to the bare electrode. Further investigations were performed to analyse and optimise the experimental parameters that could influence pesticide detection. Under the optimised conditions of pH 7 and 5 min of accumulation time, the Pt-rGO/GCE sensor showed a linear concentration detection range from 0.1 µM to 50 µM, with a detection limit of 3.46 nM. The fabricated sensor was successfully employed for CBZ detection in milk and tap water with 98.88% and 98.57% recovery, respectively. The fabricated sensor showed higher sensitivity and reproducibility, thus indicating the potential of this technology in the development of reliable sensors for the detection of CBZ or similar pesticides in forthcoming applications.
近年来,人们对电化学传感平台的发展产生了浓厚兴趣,旨在实现对农药的高灵敏度和高选择性检测。当前的研究提出了一种新颖的方法,即利用沉积在玻碳电极(Pt-rGO/GCE)上的铂纳米颗粒(NPs)和还原氧化石墨烯,对多菌灵(CBZ)进行直接电化学测量。采用简单的一步电沉积工艺制备Pt-rGO传感平台。导电的rGO纳米片与独特结构的Pt NPs相结合,显著增大了有效电极表面积并促进了CBZ的电子转移。此外,当暴露于50 µM的CBZ时,Pt-rGO/GCE相对于裸电极表现出更高的电流响应。进一步开展研究以分析和优化可能影响农药检测的实验参数。在pH值为7且富集时间为5分钟的优化条件下,Pt-rGO/GCE传感器的线性浓度检测范围为0.1 µM至50 µM,检测限为3.46 nM。所制备的传感器成功用于牛奶和自来水中CBZ的检测,回收率分别为98.88%和98.57%。所制备的传感器显示出更高的灵敏度和重现性,这表明该技术在未来应用中开发用于检测CBZ或类似农药的可靠传感器方面具有潜力。