Litcius/Paper detail

2D Leaf-Like Structured ZIF-L Embedded Electrochemically Reduced Graphene Oxide Composite as an Electrochemical Sensing Platform for Sensitively Detecting Benomyl

Min Shi, Guanwei Peng, Shuya Xue, Jingkun Xu, Yansha Gao, Shuwu Liu, Xuemin Duan, Limin Lu

2022Molecules22 citationsDOIOpen Access PDF

Abstract

In this work, a two-dimensional leaf-like framework-L embedded electrochemically reduced graphene oxide (ERGO@ZIF-L) was proposed as an outstanding electrode material for the sensitive electrochemical sensing of benomyl (BM). ZIF-L is surrounded by ERGO, which could effectively ensure the stability and dispersion of ZIF-L. With this unique combination, the prepared ERGO@ZIF-L displayed excellent synergistic characteristics with a large surface area, excellent conductivity, plentiful active sites, and high electrocatalytic properties, thus endowing it with high sensitivity for BM determination. The experimental parameters, such as solution pH, material volume, and accumulation time, were optimized. Under optimal conditions, the BM sensor showed a wide linear range (0.009-10.0 μM) and low-limit detection (3.0 nM). Moreover, the sensor displayed excellent stability, repeatability, and reproducibility, and good anti-interference capability. The method was successfully applied to detect BM in real-world samples.

Topics & Concepts

GrapheneMaterials scienceDetection limitElectrodeElectrochemistryComposite numberOxideReproducibilityElectrochemical gas sensorRepeatabilityLinear rangeDispersion (optics)ConductivityNanotechnologyChemical engineeringComposite materialChemistryChromatographyMetallurgyOpticsEngineeringPhysical chemistryPhysicsElectrochemical sensors and biosensorsElectrochemical Analysis and ApplicationsAdvanced biosensing and bioanalysis techniques