化学
双金属片
碳纳米管
检出限
选择性
电化学
电化学气体传感器
分子印迹聚合物
纳米颗粒
结构异构体
分子
线性范围
组合化学
电极
纳米复合材料
分子印迹
分析物
碳纤维
化学稳定性
化学工程
纳米技术
多孔性
作者
Maoyuan Hu,Jun Zhang,Xu Li,Jianlong Li,Xiaoli Xiong,Zhaoyu Jin
标识
DOI:10.1021/acs.analchem.5c02315
摘要
The structural and chemical similarities of isomers pose significant challenges for their accurate and simultaneous determination. In this study, for the first time, a novel triple-template molecularly imprinted electrochemical sensor (MIP-ECS) was constructed for the simultaneous, highly sensitive differentiation and detection of three dihydroxybenzene isomers. Benefiting from the porous structure provided by the ZIF derivative, the in situ-grown highly graphitized carbon nanotubes (CNTs) and the highly dispersed bimetallic nanoparticles provide abundant active sites for the electrocatalytic oxidation of isomer molecules and accelerate the charge-transfer rate. Under the optimal experimental conditions, the MIP/Ni,Co/NC@CNTs shows a wide linear range for the simultaneous detection of HQ, CC, and RC (0.2-303 μM for HQ, 0.2-213 μM for CC, and 5-230 μM for RC), with detection limits of 11.81 nM for HQ, 17.47 nM for CC, and 344.2 nM for RC, respectively. Meanwhile, the MIP-ECS also exhibits excellent stability and selectivity and has been successfully applied to the determination of the three isomers in real samples (landfill leachate, textile wastewater, and tap water) with a recovery range of 97.1-103.8%. This work applies ZIF-derived and carbon nanocomposites to multitemplate MIPs, providing a revolutionary method for the specific recognition and simultaneous detection of isomers in the environment.
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