Chemiresistive ammonia gas (NH3) sensors have been playing a significant role in the fields of environmental protection, food safety monitoring, and air quality evaluation. Nevertheless, balancing the high sensitivity and humidity tolerance remains challenging. Herein, the two-dimensional (2D) heterostructures of molybdenum trioxide (MoO3) nanoflakes decorated with dysprosium oxide (Dy2O3) nanosheets (termed Dy2O3/MoO3) were synthesized via a facile probe-sonication method. With respect to pristine MoO3 counterparts, the optimal Dy2O3/MoO3 sensors possessed a 4.49-fold larger response at a lower temperature (30.52@328.2 °C vs 6.8@369.7 °C toward 10 ppm of NH3), shorter response/recovery times (11.6/2.9 s vs 26.9/43.4 s), 52.6-fold higher se...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
Chemiresistive ammonia gas (NH3) sensors have been playing a significant role in the fields of envir...
The state of the art NO2 gas sensors suffer from a trade-off between sensitivity, reversibility, and...
Molybdenum disulfide (MoS<sub>2</sub>), as a promising gas-sensing material, has gained intense inte...
The detection and monitoring of nitrogen dioxide (NO2) plays a vital role in the environmental, heal...
Herein, we report on the successful controlled growth of edge enriched 3D assemblies of MoS2 nanoshe...
Recently, two-dimensional (2D) materials and their heterostructures have attracted con-siderable att...
Molybdenum trioxide (MoO3) has attracted considerable research interest due to its unique structural...
The capacity to detect and monitor NH3 in the environment in real time has been established using an...
Currently, the detection of hydrogen sulfide is important due to its negative effect on environment ...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Resistive humidity sensors are required in flexible and integrated devices. Two-dimensional MoO3 off...
Abstract Molybdenum-based materials have been intensively investigated for high-performance gas sens...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
Chemiresistive ammonia gas (NH3) sensors have been playing a significant role in the fields of envir...
The state of the art NO2 gas sensors suffer from a trade-off between sensitivity, reversibility, and...
Molybdenum disulfide (MoS<sub>2</sub>), as a promising gas-sensing material, has gained intense inte...
The detection and monitoring of nitrogen dioxide (NO2) plays a vital role in the environmental, heal...
Herein, we report on the successful controlled growth of edge enriched 3D assemblies of MoS2 nanoshe...
Recently, two-dimensional (2D) materials and their heterostructures have attracted con-siderable att...
Molybdenum trioxide (MoO3) has attracted considerable research interest due to its unique structural...
The capacity to detect and monitor NH3 in the environment in real time has been established using an...
Currently, the detection of hydrogen sulfide is important due to its negative effect on environment ...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Resistive humidity sensors are required in flexible and integrated devices. Two-dimensional MoO3 off...
Abstract Molybdenum-based materials have been intensively investigated for high-performance gas sens...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...