Despite the critical need to monitor H2S, a hazardous gas, in environmental and medical settings, there are currently no reliable methods for rapid and sufficiently discriminative H2S detection in real-world humid environments. Herein, targeted hybridizing of Ti3C2Tx MXene with Ag nanoparticles on a field-effect transistor (FET) platform has led to a step change in MXene sensing performance down to ppb levels, and enabled the very high selectivity and fast response/recovery time under room temperature for H2S detection in humid conditions. For the first time, we present a novel relative humidity (RH) self-calibration strategy for the accurate detection of H2S. This strategy can eliminate the influence of humidity and enables the accurate qu...
The fabrication of a gas nanosensor for detecting ammonia gas in air that is unaffected by humidity ...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
Monitoring of toxic gas in air is important because air pollution, especially in developing countrie...
Despite the critical need to monitor H2S, a hazardous gas, in environmental and medical settings, th...
There is great interest in developing a low-power gas sensing technology that can sensitively and se...
The detection of the toxic H2S gas is of great practical, environmental and industrial interest. Thi...
Detecting accurate concentrations of gas in environments with dynamically changing relative humidity...
With the advent of the Internet of Things (IoT), the development of self-powered sensors has receive...
Detection and quantification of hydrogen sulfide (H2S) gas is important as it influences directly hu...
Hydrogen Sulfide (H2S) gas sensors with very high sensitivity, selectivity, and quick responses are ...
Detecting accurate concentrations of gas in environments with dynamically changing relative humidity...
There is great interest in developing a low-power gas sensing technology that can sensitively and se...
Funding Information: This work was financially supported in part by the University of Oulu (projects...
Fast detection of H-2 gas at room temperature has constantly remained a challenge. The metal-oxide b...
A two-dimensional (2D) CeO2-Pd-PDA/rGO heterojunction nanocomposite has been synthesised via an envi...
The fabrication of a gas nanosensor for detecting ammonia gas in air that is unaffected by humidity ...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
Monitoring of toxic gas in air is important because air pollution, especially in developing countrie...
Despite the critical need to monitor H2S, a hazardous gas, in environmental and medical settings, th...
There is great interest in developing a low-power gas sensing technology that can sensitively and se...
The detection of the toxic H2S gas is of great practical, environmental and industrial interest. Thi...
Detecting accurate concentrations of gas in environments with dynamically changing relative humidity...
With the advent of the Internet of Things (IoT), the development of self-powered sensors has receive...
Detection and quantification of hydrogen sulfide (H2S) gas is important as it influences directly hu...
Hydrogen Sulfide (H2S) gas sensors with very high sensitivity, selectivity, and quick responses are ...
Detecting accurate concentrations of gas in environments with dynamically changing relative humidity...
There is great interest in developing a low-power gas sensing technology that can sensitively and se...
Funding Information: This work was financially supported in part by the University of Oulu (projects...
Fast detection of H-2 gas at room temperature has constantly remained a challenge. The metal-oxide b...
A two-dimensional (2D) CeO2-Pd-PDA/rGO heterojunction nanocomposite has been synthesised via an envi...
The fabrication of a gas nanosensor for detecting ammonia gas in air that is unaffected by humidity ...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
Monitoring of toxic gas in air is important because air pollution, especially in developing countrie...