In this work, the exceptionally improved sensing capability of highly porous three-dimensional (3-D) hybrid ceramic networks toward reducing gases is demonstrated for the first time. The 3-D hybrid ceramic networks are based on doped metal oxides (MexOy and ZnxMe1–xOy, Me = Fe, Cu, Al) and alloyed zinc oxide tetrapods (ZnO-T) forming numerous junctions and heterojunctions. A change in morphology of the samples and formation of different complex microstructures is achieved by mixing the metallic (Fe, Cu, Al) microparticles with ZnO-T grown by the flame transport synthesis (FTS) in different weight ratios (ZnO-T:Me, e.g., 20:1) followed by subsequent thermal annealing in air. The gas sensing studies reveal the possibility to control and chang...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
Abstract Due to their special shapes, compositions, chemical and physical properties, one dimensiona...
The current research demonstrates new techniques for characterization of electrical transport proper...
In this work, the exceptionally improved sensing capability of highly porous three-dimensional (3-D)...
In this work, the exceptionally improved sensing capability of highly porous 3-D hybrid ceramic netw...
Hybrid metal oxide nano- and microstructures exhibit novel properties, which make them promising can...
Hybrid metal oxide nano‐ and microstructures exhibit novel properties, which make them promising can...
ZnO nanotetrapods have recently been exploited for the realization of high-sensitivity gas sensors,...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
Zinc Oxide (ZnO) nanostructures have been obtained by vapour phase growth. Tetrapods have been grown...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
Because the commercialization of nanosensors in the field of gas sensing is still in its infancy, ma...
A composite metal oxide semiconductor (MOS) sensor array based on tin dioxide (SNO2) and zinc oxide ...
This dissertation presents the investigation of unique ZnO nanostructures grown in thermal oxidation...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
Abstract Due to their special shapes, compositions, chemical and physical properties, one dimensiona...
The current research demonstrates new techniques for characterization of electrical transport proper...
In this work, the exceptionally improved sensing capability of highly porous three-dimensional (3-D)...
In this work, the exceptionally improved sensing capability of highly porous 3-D hybrid ceramic netw...
Hybrid metal oxide nano- and microstructures exhibit novel properties, which make them promising can...
Hybrid metal oxide nano‐ and microstructures exhibit novel properties, which make them promising can...
ZnO nanotetrapods have recently been exploited for the realization of high-sensitivity gas sensors,...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
Zinc Oxide (ZnO) nanostructures have been obtained by vapour phase growth. Tetrapods have been grown...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
In this thesis, gas sensors based on on-chip hydrothermally grown 1-D zinc oxide (ZnO) nanostructure...
Because the commercialization of nanosensors in the field of gas sensing is still in its infancy, ma...
A composite metal oxide semiconductor (MOS) sensor array based on tin dioxide (SNO2) and zinc oxide ...
This dissertation presents the investigation of unique ZnO nanostructures grown in thermal oxidation...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
Abstract Due to their special shapes, compositions, chemical and physical properties, one dimensiona...
The current research demonstrates new techniques for characterization of electrical transport proper...