Institute of Physics, Bahauddin Zakariya University, 60000 Multan, Pakistan.
Department of Chemistry, COMSATS University Islamabad, Lahore Campus, Lahore 54000, Pakistan.
Food Chem. 2024 Dec 1;460(Pt 1):140395. doi: 10.1016/j.foodchem.2024.140395. Epub 2024 Jul 17.
Precise monitoring of nitrite from real samples has gained significant attention due to its detrimental impact on human health. Herein, we have fabricated poly(3,4-ethylenedioxythiophene) functionalized carbon matrix suspended Cu nanoparticles (PEDOT-C@Cu-NPs) through a facile green synthesis approach. Additionally, we have used machine learning (ML) to optimize experimental parameters such as pH, drying time, and concentrations to predict current of the designed electrochemical sensor. The ML optimized concentration of fabricated C@Cu-NPs was further functionalized by PEDOT (π-electron mediator). The designed PEDOT functionalized C@Cu-NPs (PEDOT-C@Cu-NPs) electrode has shown excellent electro-oxidation capability towards NO ions due to highly exposed Cu facets, defects rich graphitic C and high π-electron density. Additionally, the designed material has shown low detection limit (3.91 μM), high sensitivity (0.6372 μA/μM/cm), and wide linear range (5-580 μM). Additionally, the designed electrode has shown higher electrochemical sensing efficacy against real time monitoring from pickled vegetables extract.
由于亚硝酸盐对人类健康的有害影响,对其进行精确监测引起了人们的高度关注。在此,我们通过一种简单的绿色合成方法制备了聚(3,4-乙二氧基噻吩)功能化碳基质悬浮的铜纳米粒子(PEDOT-C@Cu-NPs)。此外,我们还使用机器学习(ML)优化了实验参数,如 pH 值、干燥时间和浓度,以预测设计电化学传感器的电流。进一步将优化后的 ML 浓度的所制备的 C@Cu-NPs 用 PEDOT(π-电子介体)功能化。所设计的 PEDOT 功能化 C@Cu-NPs(PEDOT-C@Cu-NPs)电极由于具有高度暴露的 Cu 面、富含缺陷的石墨 C 和高π电子密度,对 NO 离子表现出优异的电氧化能力。此外,该设计材料还表现出较低的检测限(3.91 μM)、高灵敏度(0.6372 μA/μM/cm)和较宽的线性范围(5-580 μM)。此外,该设计的电极在从腌制蔬菜提取物进行实时监测时表现出更高的电化学传感效果。