Catalytic packed bed filters ahead of gas sensors can drastically improve their selectivity, a key challenge in medical, food and environmental applications. Yet, such filters require high operation temperatures (usually some hundreds °C) impeding their integration into low-power (e.g., battery-driven) devices. Here, we reveal room-temperature catalytic filters that facilitate highly selective acetone sensing, a breath marker for body fat burn monitoring. Varying the Pt content between 0–10 mol% during flame spray pyrolysis resulted in Al2O3 nanoparticles decorated with Pt/PtOx clusters with predominantly 5–6 nm size, as revealed by X-ray diffraction and electron microscopy. Most importantly, Pt contents above 3 mol% removed up to 100 ppm m...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
Detecting 1 ppm acetone at high humidity is essential for a noninvasive diabetes diagnosis. Metal ox...
The rates of diabetes throughout the world are rising rapidly, impacting nearly every country. New r...
Catalytic packed bed filters ahead of gas sensors can drastically improve their selectivity, a key c...
Acetone is a toxic air pollutant and a key breath marker for non‐invasively monitoring fat metabolis...
Ethanol is a major confounder in gas sensing because of its omnipresence in indoor air and breath fr...
Mobile health technologies can provide routinely and on‐demand information to manage metabolic disea...
Breath analysis has the potential for early stage detection and monitoring of illnesses to drastical...
Diabetes is a lifelong condition that may cause death and seriously affects the quality of life of a...
Noble metal additives are widely used to improve the performance of metal oxide gas sensors, most pr...
In the present report, an enhanced sub-ppm level acetone sensing performance of a novel Pt and Sb2O3...
Noble metal additives are widely used to improve the performance of metal oxide gas sensors, most pr...
The need of detecting acetone in ambient environment in laboratories and factories to monitor leakag...
Chemical sensors based on metal oxides (MOx) are most promising for emerging applications including ...
This article describes a simple though extremely effective sensor for acetone monitoring in the brea...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
Detecting 1 ppm acetone at high humidity is essential for a noninvasive diabetes diagnosis. Metal ox...
The rates of diabetes throughout the world are rising rapidly, impacting nearly every country. New r...
Catalytic packed bed filters ahead of gas sensors can drastically improve their selectivity, a key c...
Acetone is a toxic air pollutant and a key breath marker for non‐invasively monitoring fat metabolis...
Ethanol is a major confounder in gas sensing because of its omnipresence in indoor air and breath fr...
Mobile health technologies can provide routinely and on‐demand information to manage metabolic disea...
Breath analysis has the potential for early stage detection and monitoring of illnesses to drastical...
Diabetes is a lifelong condition that may cause death and seriously affects the quality of life of a...
Noble metal additives are widely used to improve the performance of metal oxide gas sensors, most pr...
In the present report, an enhanced sub-ppm level acetone sensing performance of a novel Pt and Sb2O3...
Noble metal additives are widely used to improve the performance of metal oxide gas sensors, most pr...
The need of detecting acetone in ambient environment in laboratories and factories to monitor leakag...
Chemical sensors based on metal oxides (MOx) are most promising for emerging applications including ...
This article describes a simple though extremely effective sensor for acetone monitoring in the brea...
Metal oxide (MOx) gas sensors have attracted considerable attention from both scientific and practic...
Detecting 1 ppm acetone at high humidity is essential for a noninvasive diabetes diagnosis. Metal ox...
The rates of diabetes throughout the world are rising rapidly, impacting nearly every country. New r...