Tungsten trioxide (WO3) is a versatile n-type semiconductor with outstanding chromogenic properties highly used to fabricate sensors and electrochromic devices. We present a comprehensive experimental study related to piezoresponse with piezoelectric coefficient d33 = 35 pmV−1 on WO3 thin films ~200 nm deposited using RF-sputtering onto alumina (Al2O3) substrate with post-deposit annealing treatment of 400 °C in a 3% H2/N2-forming gas environment. X-ray diffraction (XRD) confirms a mixture of orthorhombic and tetragonal phases of WO3 with domains with different polarization orientations and hysteresis behavior as observed by piezoresponse force microscopy (PFM). Furthermore, using atom probe tomography (APT), the microstructure reveals the ...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...
Tungsten trioxide (WO3) is a versatile n-type semiconductor with outstanding chromogenic properties ...
Tungsten trioxide has shown good sensing properties towards various gases. Recently thin nanostruct...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Reduced WO3 single crystals have been investigated by conductive and piezoresponse force microscopy....
This study investigates the nanomechanical properties and surface morphology of tungsten oxide WO3th...
Though tungsten trioxide (WO3) in bulk, nanosphere, and thin film samples has been extensively studi...
Nanostructured tungsten trioxide (WO3) thin films are deposited by pulsed laser deposition (PLD) and...
This thesis concerns experimental studies of nanocrystalline tungsten trioxide thin films. Functiona...
Tungsten oxide (WO3) films were deposited on p-type Si (100) substrates using atomic layer depositio...
Tunsten oxide nanorods are grown on mica substrate in air from WO3 vapor at 590 °C. They are epitax...
AbstractTungsten trioxide nanostructures, containing WO3 ϵ-phase, were deposited by pulsed laser dep...
WO3 has been proved to be a great material for NO2 sensing [1,2]. This n-type semiconductor needs h...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...
Tungsten trioxide (WO3) is a versatile n-type semiconductor with outstanding chromogenic properties ...
Tungsten trioxide has shown good sensing properties towards various gases. Recently thin nanostruct...
Tungsten trioxide is a material with a variety of application areas. For example, the material is us...
Reduced WO3 single crystals have been investigated by conductive and piezoresponse force microscopy....
This study investigates the nanomechanical properties and surface morphology of tungsten oxide WO3th...
Though tungsten trioxide (WO3) in bulk, nanosphere, and thin film samples has been extensively studi...
Nanostructured tungsten trioxide (WO3) thin films are deposited by pulsed laser deposition (PLD) and...
This thesis concerns experimental studies of nanocrystalline tungsten trioxide thin films. Functiona...
Tungsten oxide (WO3) films were deposited on p-type Si (100) substrates using atomic layer depositio...
Tunsten oxide nanorods are grown on mica substrate in air from WO3 vapor at 590 °C. They are epitax...
AbstractTungsten trioxide nanostructures, containing WO3 ϵ-phase, were deposited by pulsed laser dep...
WO3 has been proved to be a great material for NO2 sensing [1,2]. This n-type semiconductor needs h...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
Tungsten oxide (WO3) is a multifunctional material which has applications in electronics, sensors, o...
We have investigated the formation of highly porous nanostructured tungsten trioxide (WO3) films of ...