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Published on: November 28, 2017
Low-Temperature Ammonia Sensing Using Sulfurized WS2 Thin Films
Naman Kumar1, Ivan Hotový1,2, Magdaléna Kadlečíková1
1Faculty of Electrical Engineering and Information Technology, Slovak University of Technology, Ilkovičova 3, 81219 Bratislava, Slovakia.
This study demonstrates tungsten disulfide (WS2) thin films for highly sensitive ammonia (NH3) gas sensing at low temperatures. The optimized WS2 films achieved a low limit of detection, showcasing their potential for efficient gas detection systems.
Area of Science:
- Materials Science
- Nanotechnology
- Chemical Sensing
Background:
- Gas sensors often require high operating temperatures, increasing energy consumption and limiting applications.
- Developing sensitive and selective gas sensors for ammonia (NH3) at lower temperatures is crucial for environmental monitoring and industrial safety.
Purpose of the Study:
- To investigate the gas sensing properties of tungsten disulfide (WS2) thin films at low operating temperatures.
- To optimize WS2 film deposition and sulfurization for enhanced ammonia (NH3) sensing performance.
Main Methods:
- Tungsten disulfide (WS2) thin films were prepared using sputtering and subsequent sulfurization at 800 °C on quartz and sapphire substrates.
- Material characterization included Raman spectroscopy, X-ray diffraction (XRD), and Field Emission Scanning Electron Microscopy (FESEM).
- Gas sensing performance was evaluated for ammonia (NH3) detection across a temperature range of 30-150 °C.
Main Results:
- Raman spectroscopy and XRD confirmed the formation of multilayer hexagonal 2H-WS2 phase.
- FESEM images revealed nanoparticle morphology with some texturing.
- The WS2 films demonstrated stable and high sensitivity to ammonia (NH3) in the 10-200 ppm range at low operating temperatures.
- A minimum limit of detection of 0.6 ppm for NH3 was achieved at 150 °C for WS2 films sulfurized for 60 min on quartz.
Conclusions:
- Tungsten disulfide (WS2) thin films are promising materials for low-temperature ammonia (NH3) gas sensing.
- Optimized sulfurization time and substrate choice significantly impact sensing performance.
- The developed WS2 gas sensors offer high sensitivity and a low limit of detection, suitable for practical applications.
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