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◆ Food chemistry2026-08-22

Engineering highly dispersed Bi nanoparticles via COF confinement for enhanced electrochemical sensing of Cd2+ and Pb2+ in grain.

Huimin Ma, Renhui Yang, Fengjin Zhang, Peizhu Wang, Xiaoxian Hu, Yuanyuan Zhang, Juan Yang, Xiaoyu Li, Nianjun Yang

原始摘要(英文原文)· Original abstract
The presence of Pb2+ and Cd2+ in grain can have adverse effects on human health. Consequently, there is a pressing need for electrochemical sensors for rapid and sensitive detection of Cd2+ and Pb2+. Owing to their tunable porosity and structural versatility, covalent organic frameworks (COF) are increasingly being explored for electrochemical sensing applications. Herein, an imine-linked COF confined Bi nanoparticles (NPs) was fabricated by an environmentally friendly technique and an approach of chemical reduction. The COF substrate prevents the BiNPs from aggregating, exposing more active sites. Using laser induced graphene (LIG) as a flexible substrate, a novel BiNPs/COF/LIG electrochemical sensor for Pb2+ and Cd2+ was developed. The sensor displays high conductivity, large surface area and numerous adsorption sites. A linear relationship was observed between the signal and concentrations of Pb2+ and Cd2+ from 2.5 to 800 μg/L, with detection limits as low as 0.38 and 0.25 μg/L, respectively.
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Engineering highly dispersed Bi nanoparticles via COF confinement for enhanced electrochemical sensing of Cd2+ and Pb2+ in grain. — 科研速览 Science Skim