The influence of charge localized at the surface of minute metal oxide nanocrystals was studied in WO3 and In2O3 nanostructures, which were obtained replicating mesoporous silica templates. Here, it is shown that the very high resistive states observed at room temperature and dark conditions were originated by the total shrinkage of the conductive zone in the inner part of these nanocrystals. On the contrary, at room temperature and under UV illumination, both photogenerated electron-hole pairs and empty surface states generated by photons diminished the negative charge accumulated at the surface, enlarging the conductive zone and, as a consequence, leading to a reduction of the electrical resistance. Under these conditions, empty surface s...
The phenomenon of electrical conductivity being controlled by the chemical state of a surface grafte...
Tungsten trioxide has shown good sensing properties towards various gases. Recently thin nanostruct...
This review article is focused on the description of metal oxide single crystalline nanostructures u...
A correlation between the surface reactions and the electrical response of doped nano-metal-oxide-se...
Metal oxide gas sensors are widely used for different applications and operate normally at high temp...
The responses of individual ZnO nanowires to UV light demonstrate that the persistent photoconductiv...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
Nanocrystalline metal/metal oxide is an important class of transparent and electronic materials due ...
Abstract. We present experimental data on the conductivity evolution in InO x nanocrystalline (nano-...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
Dynamic control over the localized surface plasmon resonance (LSPR) makes doped metal oxide nanocrys...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O...
The introduction of transition metal oxides for building nanodevices in information technology promi...
The phenomenon of electrical conductivity being controlled by the chemical state of a surface grafte...
Tungsten trioxide has shown good sensing properties towards various gases. Recently thin nanostruct...
This review article is focused on the description of metal oxide single crystalline nanostructures u...
A correlation between the surface reactions and the electrical response of doped nano-metal-oxide-se...
Metal oxide gas sensors are widely used for different applications and operate normally at high temp...
The responses of individual ZnO nanowires to UV light demonstrate that the persistent photoconductiv...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
Nanocrystalline metal/metal oxide is an important class of transparent and electronic materials due ...
Abstract. We present experimental data on the conductivity evolution in InO x nanocrystalline (nano-...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
Dynamic control over the localized surface plasmon resonance (LSPR) makes doped metal oxide nanocrys...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O...
The introduction of transition metal oxides for building nanodevices in information technology promi...
The phenomenon of electrical conductivity being controlled by the chemical state of a surface grafte...
Tungsten trioxide has shown good sensing properties towards various gases. Recently thin nanostruct...
This review article is focused on the description of metal oxide single crystalline nanostructures u...