In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing performance. MoO3 NS were synthesized using thermal evaporation method. FE-SEM (LEO 1525) and XRD were used to characterize the morphology and crystallinity of MoO3 NS. Sensing devices were mounted on TO packages using electro-soldered gold wires, and they were tested toward some chemical compounds. These NS give reversible response to Acetone, Ethanol and H2 in a temperature range of 300–550 °C. MoO3 sensors exhibit a high response ∆G/G = 45 towards 50 ppm of Ethanol at 450 °C
Micro - and nanostructures of molybdenum trioxide (MoO3) have been investigated intensively for sens...
International audienceSnO2/MoO3 mixed samples from 0 to 100 mol% MoO3 have been prepared by using th...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
In this work, MoO3 was thermally evaporated onto gold interdigital fingers on quartz substrates and ...
Formaldehyde is a volatile organic compound that is widely used in industry and household materials....
MoO3 thin films have been prepared by a simple spray pyrolysis technique at substrate temperature 25...
Hexagonal molybdenum oxide (h-MoO3) was synthesized by a solution based chemical precipitation techn...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Abstract- MoO3 thin films have been prepared by a simple spray pyrolysis technique at substrate temp...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Development of MoO3 as a novel material for gas sensing was addressed. Thin filmswere produced by re...
Molybdenum trioxide (MoO3) has attracted considerable research interest due to its unique structural...
Micro - and nanostructures of molybdenum trioxide (MoO3) have been investigated intensively for sens...
International audienceSnO2/MoO3 mixed samples from 0 to 100 mol% MoO3 have been prepared by using th...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
In gas sensor applications, the availability of highly sensitive and rapid response/recovery detecto...
In this work, MoO3 was thermally evaporated onto gold interdigital fingers on quartz substrates and ...
Formaldehyde is a volatile organic compound that is widely used in industry and household materials....
MoO3 thin films have been prepared by a simple spray pyrolysis technique at substrate temperature 25...
Hexagonal molybdenum oxide (h-MoO3) was synthesized by a solution based chemical precipitation techn...
The rational interaction between the oxide surfaces and aimed gas is favorable for enhancement in ga...
Abstract- MoO3 thin films have been prepared by a simple spray pyrolysis technique at substrate temp...
Ethanol sensors with effective and selective sensitivity are extensively used by traffic police to d...
This study successfully developed a semiconductor metal oxide-based ammonia gas sensor that was powe...
Development of MoO3 as a novel material for gas sensing was addressed. Thin filmswere produced by re...
Molybdenum trioxide (MoO3) has attracted considerable research interest due to its unique structural...
Micro - and nanostructures of molybdenum trioxide (MoO3) have been investigated intensively for sens...
International audienceSnO2/MoO3 mixed samples from 0 to 100 mol% MoO3 have been prepared by using th...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...