The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in gas-sensing (including rapid response and recovery rate, remarkable response value, and excellent selectivity). Herein, we have prepared acidic alpha-MoO3 nanorods through a facile hydrothermal route. The as-obtained MoO3 nanorods possess about 10 mu m in length and around 200-300 nm in diameter, respectively. The gas sensor fabricated using these MoO3 nanorods exhibits an apparent response to triethylamine (TEA) vapor with an actual detection concentration as low as 0.1 ppm at its optimal working temperature of 300 degrees C. The response time for detecting 100 ppm TEA is only 4 s, and the recovery time is less than 2 min (88 s). Moreover, the...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...
In this work, Pt nanoparticles-decorated urchin-like W18O49 microspheres are synthesized by a simple...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Triethylamine (TEA), a high-molecular amine, has a terrible desorption rate on oxide surfaces, and i...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
Owing to their high surface area, stable structure and easy fabrication, composite nanomaterials wit...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
Formaldehyde is a volatile organic compound that is widely used in industry and household materials....
Triethylamine (TEA) is a flammable and highly toxic gas, and the fast, accurate, and sensitive detec...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Introducing a groundbreaking solution, a room-temperature (RT, 25 °C) gas sensor addresses complexit...
During the detection of industrial toxic gases, such as triethylamine (TEA), poor selectivity and ne...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...
In this work, Pt nanoparticles-decorated urchin-like W18O49 microspheres are synthesized by a simple...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Triethylamine (TEA), a high-molecular amine, has a terrible desorption rate on oxide surfaces, and i...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
Owing to their high surface area, stable structure and easy fabrication, composite nanomaterials wit...
Effective detection of triethylamine (TEA) is important for the human health and environment, while ...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
Formaldehyde is a volatile organic compound that is widely used in industry and household materials....
Triethylamine (TEA) is a flammable and highly toxic gas, and the fast, accurate, and sensitive detec...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Introducing a groundbreaking solution, a room-temperature (RT, 25 °C) gas sensor addresses complexit...
During the detection of industrial toxic gases, such as triethylamine (TEA), poor selectivity and ne...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
Engineering: 2nd Place (The Ohio State University Denman Undergraduate Research Forum)Titanium dioxi...
In this work, Pt nanoparticles-decorated urchin-like W18O49 microspheres are synthesized by a simple...