Acetone in the human breath is a key marker for noninvasive diagnosis of diabetes. Here, sensing films of pure and SiO2-doped WO3 nanoparticles have been made, directly deposited and in situ annealed onto interdigitated electrodes by scalable flame aerosol technology. A unique innovation here is that these films consist of ε-WO3, a metastable phase that has a high selectivity to acetone. The effect of nontoxic Si doping on the ε-phase content and crystal and grain sizes was investigated and correlated to the acetone sensing performance of these films. The thermal stability of these materials was characterized as well, revealing a unique opportunity for reliable sensing of acetone and noninvasive diagnostics of diabetes. An optimal doping le...
This paper reports on the high sensitivity of sub-spherical In2O3-Pt nanoparticles (NPs) for detecti...
AbstractTiO2-WO3 nanocomposites were prepared by colloidal processing in solvothermal conditions, wi...
New medical diagnostic methods such as non-invasive breath analysis bear the potential of drasticall...
Diabetes is a lifelong condition that may cause death and seriously affects the quality of life of a...
Breath analysis has the potential for early stage detection and monitoring of illnesses to drastical...
Tungsten oxide based gas sensors have attracted a lot of attention in breath acetone analysis due to...
Defect and facet engineering are the two effective approaches to tune the surface reactivity of meta...
Metal oxide nanocomposite sensors based on gamma-Fe2O3 and WO3 were investigated in acetone vapor of...
The acetone sensors based on In-doped WO3 nanostructures have been investigated for different operat...
Metal oxide semiconductor (MOS) gas sensors are promising for applications in environmental monitori...
Abstract A diabetes sensor was developed to detect low concentrations of acetone gas, which is a dia...
In the present report, an enhanced sub-ppm level acetone sensing performance of a novel Pt and Sb2O3...
The rates of diabetes throughout the world are rising rapidly, impacting nearly every country. New r...
Monitoring and control of volatile organic compounds have become increasingly important for humans a...
Along with more than two hundred volatile organic compounds (VOCs), acetone is also a normal constit...
This paper reports on the high sensitivity of sub-spherical In2O3-Pt nanoparticles (NPs) for detecti...
AbstractTiO2-WO3 nanocomposites were prepared by colloidal processing in solvothermal conditions, wi...
New medical diagnostic methods such as non-invasive breath analysis bear the potential of drasticall...
Diabetes is a lifelong condition that may cause death and seriously affects the quality of life of a...
Breath analysis has the potential for early stage detection and monitoring of illnesses to drastical...
Tungsten oxide based gas sensors have attracted a lot of attention in breath acetone analysis due to...
Defect and facet engineering are the two effective approaches to tune the surface reactivity of meta...
Metal oxide nanocomposite sensors based on gamma-Fe2O3 and WO3 were investigated in acetone vapor of...
The acetone sensors based on In-doped WO3 nanostructures have been investigated for different operat...
Metal oxide semiconductor (MOS) gas sensors are promising for applications in environmental monitori...
Abstract A diabetes sensor was developed to detect low concentrations of acetone gas, which is a dia...
In the present report, an enhanced sub-ppm level acetone sensing performance of a novel Pt and Sb2O3...
The rates of diabetes throughout the world are rising rapidly, impacting nearly every country. New r...
Monitoring and control of volatile organic compounds have become increasingly important for humans a...
Along with more than two hundred volatile organic compounds (VOCs), acetone is also a normal constit...
This paper reports on the high sensitivity of sub-spherical In2O3-Pt nanoparticles (NPs) for detecti...
AbstractTiO2-WO3 nanocomposites were prepared by colloidal processing in solvothermal conditions, wi...
New medical diagnostic methods such as non-invasive breath analysis bear the potential of drasticall...