Triethylamine (TEA) is a flammable and highly toxic gas, and the fast, accurate, and sensitive detection of gas TEA remains greatly challenging. Herein, we report a ZnO nanorod anchored with a single-atom Pt catalyst (Pt1/ZnO) as a gas sensor for TEA detection. The sensor shows high selectivity and high response to gas TEA with a response value of 4170 at 200 °C, which is 92 times higher than that of pure ZnO. Moreover, the Pt1/ZnO sensor has very short response and recovery times of only 34 and 76 s, respectively, and also has a high response to ppb-level TEA gas (100 ppb-21.6). The gas-sensing enhancement mechanism of the Pt1/ZnO sensor to gas TEA was systematically investigated using band structure analysis, in situ diffuse reflectance i...
Nanocrystalline ZnO quantum dots (QD) with a diameter of 10 nm was synthesized and tested toward eig...
Hybrid materials based on wide band gap semiconductors and dye molecules are intensively studied for...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
Chemiresistive gas sensors with low power consumption, fast response, and reliable fabrication proce...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
In this paper, thin film gas sensors made from 8-nm-diameter and exposed-{10-10}-facet ZnO nanorods ...
Gas sensor devices have traditionally comprised thin films of metal oxides, with tin oxide, zinc oxi...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
In this work, well-aligned ZnO nanorods were grown on the substrate of exfoliated g-C 3 N 4 nanoshee...
The detection of trace amount of volatile organic compounds (VOCs) has been covered by tons of resea...
The sensitivity of a metal oxide gas sensor is strongly dependent on the nature of the crystal surfa...
Though the chemical origin of a metal oxide gas sensor is widely accepted to be the surface reaction...
Fabrication of multifunctional devices based on nano- and microstructures of a single semiconducting...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Nanocrystalline ZnO quantum dots (QD) with a diameter of 10 nm was synthesized and tested toward eig...
Hybrid materials based on wide band gap semiconductors and dye molecules are intensively studied for...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
Chemiresistive gas sensors with low power consumption, fast response, and reliable fabrication proce...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
In this paper, thin film gas sensors made from 8-nm-diameter and exposed-{10-10}-facet ZnO nanorods ...
Gas sensor devices have traditionally comprised thin films of metal oxides, with tin oxide, zinc oxi...
Zinc oxide nanoparticles are prepated by calcining zinc hydrocarbonate precursors at 300-700 degrees...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
In this work, well-aligned ZnO nanorods were grown on the substrate of exfoliated g-C 3 N 4 nanoshee...
The detection of trace amount of volatile organic compounds (VOCs) has been covered by tons of resea...
The sensitivity of a metal oxide gas sensor is strongly dependent on the nature of the crystal surfa...
Though the chemical origin of a metal oxide gas sensor is widely accepted to be the surface reaction...
Fabrication of multifunctional devices based on nano- and microstructures of a single semiconducting...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Nanocrystalline ZnO quantum dots (QD) with a diameter of 10 nm was synthesized and tested toward eig...
Hybrid materials based on wide band gap semiconductors and dye molecules are intensively studied for...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...