Effective detection of triethylamine (TEA) is important for the human health and environment, while challenging. In this study, a novel hierarchical flower-like WO3 nanomaterial was synthesized using a microwave-assisted gas-liquid interface method. The morphology and exposed facets of WO3 nanomaterials can be manipulated through the control of the volume ratio between the water and ethylene glycol (EG) during the synthesis. Our results demonstrate that the samples prepared with water/EG ratio of 8:32 are mainly exposed {-112} facets, which have the best gas sensing response of 180.7 to 100 ppm TEA at room temperature (RT). Its superior gas sensing performance and stability are also evidenced by the short recovery speed of 72 s to 100 ppm T...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Introducing a groundbreaking solution, a room-temperature (RT, 25 °C) gas sensor addresses complexit...
Owing to their high surface area, stable structure and easy fabrication, composite nanomaterials wit...
In this study, tungsten trioxide (WO3) nanostructure material is integrated onto interdigitated (IDE...
Triethylamine (TEA), a high-molecular amine, has a terrible desorption rate on oxide surfaces, and i...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
Abstract The effect of WO3 nano-crystal characteristic size and layer morphology on gas sensitive pr...
While numerous types of gas sensors have been developed for various industries and applications such...
Different synthetical routes involving several solvents for obtaining WO3powders, suitable for gas s...
In this work, WO3 nanosheets are synthesized successfully through the hydrothermal method. Ru is the...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Introducing a groundbreaking solution, a room-temperature (RT, 25 °C) gas sensor addresses complexit...
Owing to their high surface area, stable structure and easy fabrication, composite nanomaterials wit...
In this study, tungsten trioxide (WO3) nanostructure material is integrated onto interdigitated (IDE...
Triethylamine (TEA), a high-molecular amine, has a terrible desorption rate on oxide surfaces, and i...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
The inspiration behind this research is the development of tungsten oxide (WO3) nanowires based, hig...
Abstract The effect of WO3 nano-crystal characteristic size and layer morphology on gas sensitive pr...
While numerous types of gas sensors have been developed for various industries and applications such...
Different synthetical routes involving several solvents for obtaining WO3powders, suitable for gas s...
In this work, WO3 nanosheets are synthesized successfully through the hydrothermal method. Ru is the...
Hexagonal WO3 nanorods and orthorhombic WO3 nanoparticles were prepared by a simple hydrothermal met...
Nitrogen dioxide (NO2) has been identified as a serious air pollutant that threats to our environmen...
In this present study, the fabricated sensors based on WO3 nanowires sensing films were grown by the...