The conductivity and conductometric sensor response of mixed In2O3 + ZnO nanocrystalline composite systems to H-2 and CO in air ambience are investigated for varying oxide compositions. The maximum sensor response to H-2 and CO is obtained for composite films containing 15 wt% and 80 wt% In2O3. This sensor response is also much higher than the values obtained for the individual oxides. The sensory mechanism is proposed to be largely determined by the dependence of the conduction paths on the film composition. The major factors determining the conductivity and sensor response of the In2O3 + ZnO composite are: (i) the modification of the electronic structure of the crystals (mainly, In2O3) during the synthesis of the composite, (ii) the elect...
ZnO-SnO2 composites of 0-100 mol% composition range were fabricated in the form of pellet by sinteri...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
The conductivity and conductometric sensor response of mixed In 2O3 +ZnO nanocrystalline composite s...
The conductometric response of SnO2 + In2O3 nanocomposite films to hydrogen and carbon monoxide in a...
The conductometric response of SnO 2 + In 2O 3 nanocomposite films to hydrogen and carbon monoxide i...
The sensory response of nanostructured In2O3 + CeO2 composite films to hydrogen and carbon monoxide ...
The sensory response of nanostructured In2O3 + CeO2 composite films to hydrogen and carbon monoxide ...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
Nowadays, for environmental protection, the use of portable gas sensor is essential to detect toxic ...
In2O3\u2010ZnO composite thin films were fabricated and their NOx sensing characteristics were inve...
This study reviews the structure and properties of nanostructured composite conductometric sensors b...
In\u2082O\u2083\u2013ZnO composite films were fabricated and their NOx sensing characteristics were ...
ZnO and ZnO-CuO composite thin films were fabricated by sol-gel spin coating method and their electr...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
ZnO-SnO2 composites of 0-100 mol% composition range were fabricated in the form of pellet by sinteri...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...
The conductivity and conductometric sensor response of mixed In 2O3 +ZnO nanocrystalline composite s...
The conductometric response of SnO2 + In2O3 nanocomposite films to hydrogen and carbon monoxide in a...
The conductometric response of SnO 2 + In 2O 3 nanocomposite films to hydrogen and carbon monoxide i...
The sensory response of nanostructured In2O3 + CeO2 composite films to hydrogen and carbon monoxide ...
The sensory response of nanostructured In2O3 + CeO2 composite films to hydrogen and carbon monoxide ...
Undoped nanosized In2O3 with n-type conduction was produced in both polymorphic forms (cubic and rho...
Nowadays, for environmental protection, the use of portable gas sensor is essential to detect toxic ...
In2O3\u2010ZnO composite thin films were fabricated and their NOx sensing characteristics were inve...
This study reviews the structure and properties of nanostructured composite conductometric sensors b...
In\u2082O\u2083\u2013ZnO composite films were fabricated and their NOx sensing characteristics were ...
ZnO and ZnO-CuO composite thin films were fabricated by sol-gel spin coating method and their electr...
Pure zinc oxide (ZnO) nanorods and zinc-tin oxide (ZnO-SnO2) composites based gas sensors were fabri...
ZnO-SnO2 composites of 0-100 mol% composition range were fabricated in the form of pellet by sinteri...
This study aims to provide a better fundamental understanding of the gas-sensing mechanism of In(2)O...
AbstractThis study aims to provide a better fundamental understanding of the gas-sensing mechanism o...