化学
检出限
电化学
同种类的
残留物(化学)
基质(水族馆)
线性范围
催化作用
密度泛函理论
组合化学
电化学气体传感器
纳米技术
选择性
生物传感器
极限(数学)
作者
Chaofeng Zhang,Yinhui Yi,Yong Zhao,Gangbing Zhu
标识
DOI:10.1021/acs.inorgchem.5c05560
摘要
This study prepared UiO-66-NH 2 MOFs embedded with Ru-tris(2,2′-bipyridyl)(II) hybrids as a nanozyme (designated as Ru/UiO-66-NH 2 ) to propose a bioenzyme-free homogeneous electrochemical (HEC) sensing strategy for detecting organophosphorus pesticides (OPs). Experimental investigation coupled with density functional theory calculation demonstrated that the Ru incorporation significantly amplifies the peroxidase-like (POD-like) activity of UiO-66-NH 2 MOFs and that the Ru/UiO-66-NH 2 nanozyme exhibits selective responsiveness to coordinate with the OP molecules. Upon OP exposure, the specifical coordination between OPs and MOF structure effectively inhibits the nanozyme’s activity. Utilizing o -phenylenediamine as the catalytic substrate and glyphosate as a model of OPs, the optimized HEC sensor achieves an extensive linear detection range (0.5–10,000 ng/mL) and a low detection limit of 0.13 ng/mL as well as satisfactory recoveries in the real samples of tomato extract and water. It is expected that this innovative bioenzyme-free HEC sensing strategy represents a promising advancement for practical OP residue analysis with potential applications in various fields.
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