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Hydrothermally grown oriented ZnO nanorod arrays for gas sensing applications

Nanotechnology · 2006 · Vol. 17(19) · pp. 4995–4998
Jisha WangXiao Wei SunYi YangHui HuangYuna LeeOoi Kiang TanLionel Vayssières

Abstract

C-axis vertically aligned ZnO nanorod arrays were synthesized on a ZnO thin film through a simple hydrothermal route. The nanorods have a diameter of 30–100 nm and a length of about several hundred nanometres. The gas sensor fabricated from ZnO nanorod arrays showed a high sensitivity to H2 from room temperature to a maximum sensitivity at 250 °C and a detection limit of 20 ppm. In addition, the ZnO gas sensor also exhibited excellent responses to NH3 and CO exposure. Our results demonstrate that the hydrothermally grown vertically aligned ZnO nanorod arrays are very promising for the fabrication of cost effective and high performance gas sensors.

Gas Sensing Nanomaterials and SensorsZnO doping and propertiesGa2O3 and related materialsNanorodMaterials scienceFabricationHydrothermal circulationNanotechnologySensitivity (control systems)OptoelectronicsChemical engineeringElectronic engineering
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References
The effects of thickness and operation temperature on ZnO:Al thin film CO gas sensor
Sensors and Actuators B Chemical · 2002 · 543 citations
Semiconducting oxides as gas-sensitive resistors
Sensors and Actuators B Chemical · 1999 · 719 citations
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