Resistive humidity sensors are required in flexible and integrated devices. Two-dimensional MoO3 offers a large interface area, enabling the modulation of its electrical properties over a wide range. In this study, 2D MoO3 was synthesized via liquid-phase exfoliation for humidity-sensing tests. In terms of high sensitivity, negligible hysteresis, linearity, and stability, the humidity-sensing performance of MoO3 is superior to those of other materials. The sensitivity reaches 9794 Ω/RH at 25 °C. The sensing mechanism of MoO3 was investigated by using impedance spectra and voltage–current scans under different humidity levels. The results indicate that the resistance change of MoO3 due to humidity originates from the interfacial conductance....
For impedance-type sensors based on semiconducting metal oxides, the overall conduction mechanisms s...
Two-dimensional (2D) α-MoO3 nano-films with thickness of 4.9 nm were fabricated via atomic layer dep...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
MoO3 is widely used in polymer-based organic solar cells as an anode buffer layer because of its hig...
Two-dimensional materials, such as transition-metal dichalcogenides (TMDs), are attractive candidate...
The application of oxide buffer layers for improved carrier extraction is ubiquitous in organic elec...
Chemiresistive ammonia gas (NH3) sensors have been playing a significant role in the fields of envir...
In this work, MoO3 was thermally evaporated onto gold interdigital fingers on quartz substrates and ...
In present work, we report synthesis of orthorhombic-molybdenum trioxide (α-MoO 3 ) thin films using...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
In this work, surface-type humidity sensors with P3HT (organic) and P3HT–TiO2 (organic–inorganic hyb...
2D transition metal carbides and nitrides (MXenes) open up novel opportunities in gas sensing with h...
International audienceMesoporous materials have been studied as high performance sensing materials d...
Semiconducting metal oxide - based gas sensors exhibit outstanding sensitivity, although humidity in...
For impedance-type sensors based on semiconducting metal oxides, the overall conduction mechanisms s...
Two-dimensional (2D) α-MoO3 nano-films with thickness of 4.9 nm were fabricated via atomic layer dep...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...
MoO3 is widely used in polymer-based organic solar cells as an anode buffer layer because of its hig...
Two-dimensional materials, such as transition-metal dichalcogenides (TMDs), are attractive candidate...
The application of oxide buffer layers for improved carrier extraction is ubiquitous in organic elec...
Chemiresistive ammonia gas (NH3) sensors have been playing a significant role in the fields of envir...
In this work, MoO3 was thermally evaporated onto gold interdigital fingers on quartz substrates and ...
In present work, we report synthesis of orthorhombic-molybdenum trioxide (α-MoO 3 ) thin films using...
Nanostructured molybdenum oxide (MoO3) gas sensitive layers were deposited on Au and Pt inter-digita...
In this work, surface-type humidity sensors with P3HT (organic) and P3HT–TiO2 (organic–inorganic hyb...
2D transition metal carbides and nitrides (MXenes) open up novel opportunities in gas sensing with h...
International audienceMesoporous materials have been studied as high performance sensing materials d...
Semiconducting metal oxide - based gas sensors exhibit outstanding sensitivity, although humidity in...
For impedance-type sensors based on semiconducting metal oxides, the overall conduction mechanisms s...
Two-dimensional (2D) α-MoO3 nano-films with thickness of 4.9 nm were fabricated via atomic layer dep...
In the present work, we studied the controlled growth of MoO3 nanostructures and their gas sensing p...