4.8 Article

Room-Temperature Benzene Sensing with Au-Doped ZnO Nanorods/Exfoliated WSe2 Nanosheets and Density Functional Theory Simulations

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 28, 页码 33392-33403

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c03884

关键词

WSe2 nanosheets; benzene sensor; self-assembly technology; liquid-phase exfoliation; density functional theory

资金

  1. National Natural Science Foundation of China [51777215]
  2. Key Laboratory of Engineering Dielectrics and Its Application (Harbin University of Science and Technology), Ministry of Education [KFZ1801]
  3. Open Fund of Key Laboratory of Marine Spill Oil Identification and Damage Assessment Technology, State Oceanic Administration of China [201801]

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The research demonstrates a gold-doped zinc oxide/exfoliated tungsten diselenide nanocomposite-based gas sensor with high sensing properties towards benzene. The nanoheterostructures constructed by self-assembly technology significantly enhance the sensing performance of the sensor. The sensor shows improved response, selectivity, repeatability, and detection rate compared to other materials and composites.
A gold-doped zinc oxide (Au-ZnO)/exfoliated tungsten diselenide (exfoliated WSe2) nanocomposite-based gas sensor toward benzene with high sensing properties was demonstrated. Epoxy resin was used as the matrix of the Au-ZnO/exfoliated WSe2 nanocomposite sensor. The straw-shaped Au-ZnO was synthesized by the hydrothermal method, and WSe2 nanosheets (NSs) were prepared via hydrothermal and liquid-phase exfoliation methods. The properties of Au-ZnO/exfoliated WSe2 nanoheterostructures constructed by self-assembly technology have been confirmed via a series of characterization methods. The benzene-sensing performances of sensors were tested at 25 degrees C. Compared with Au-ZnO, WSe2, and their composites, the Au-ZnO/exfoliated WSe2 sensor has a significant performance improvement, including a higher response and linear fit degree, better selectivity and repeatability, and faster detection rate. The significantly enhanced sensing properties of the Au-ZnO/exfoliated WSe2 sensor can be ascribed to the doping of Au nanoparticles, the increase in the specific surface area and adsorption sites of NSs after exfoliation, and the cooperative interface combination of the ZnO/WSe2 heterojunction. Furthermore, the sensitivity mechanism of the composite sensor to benzene was explored by density functional theory simulations.

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