The results of research aimed at the gas sensing nanowires (NWs) engineering are presented. Structurally modulated SnO2 NWs were obtained at 900oС in the modified vapor-solid process, allowing that NW morphology could be encoded in a programmable way along its length. PVD technique was used for Ti/Au electrical contacts deposition and gas sensitive nanoscale chemiresistors formation. Created nanostructures were characterized for their gas sensing performance. It was established that structurally-modulated NWs possess better gas sensitive characteristics in comparison with the straight ones. Obtained results are discussed from the positions of single-crystal "necks" formation in NWs
Tin oxide nanowires were successful prepared using thermal evaporation method. The crystal structure...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Metal oxide nanowires have been deposited on 100nm SiO2/Si substrates and SnO2 and ZnO single nanowi...
Abstract – The results of research aimed at the gas sensing nanowires (NWs) engineering are presente...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
In the present work SnO2 nanowires were synthetized by using vapour-liquid-solid technique (VLS) on ...
Quasi one-dimensional nanostructures of semiconducting metal oxides are promising for the developmen...
Abstract- Paper presents results of study aimed the tin dioxide nanowire gas sensing performance imp...
Low dimensional nanostructures have defined the frontier of the research in material science for the...
Single crystal nanostructures of semiconducting tin oxides have been fabricated and characterized as...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
Abstract: Morphology Control plays an important role in gas sensing properties of metal oxide semico...
We prepared a highly sensitive and selective NO2 sensor, based on the TeO2 branched SnO2 nanowires (...
Mimicking the biological olfactory systems that consist of olfactory receptor arrays with large surf...
Strategies for the enhancement of gas sensing properties, and specifically the improvement of gas se...
Tin oxide nanowires were successful prepared using thermal evaporation method. The crystal structure...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Metal oxide nanowires have been deposited on 100nm SiO2/Si substrates and SnO2 and ZnO single nanowi...
Abstract – The results of research aimed at the gas sensing nanowires (NWs) engineering are presente...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
In the present work SnO2 nanowires were synthetized by using vapour-liquid-solid technique (VLS) on ...
Quasi one-dimensional nanostructures of semiconducting metal oxides are promising for the developmen...
Abstract- Paper presents results of study aimed the tin dioxide nanowire gas sensing performance imp...
Low dimensional nanostructures have defined the frontier of the research in material science for the...
Single crystal nanostructures of semiconducting tin oxides have been fabricated and characterized as...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
Abstract: Morphology Control plays an important role in gas sensing properties of metal oxide semico...
We prepared a highly sensitive and selective NO2 sensor, based on the TeO2 branched SnO2 nanowires (...
Mimicking the biological olfactory systems that consist of olfactory receptor arrays with large surf...
Strategies for the enhancement of gas sensing properties, and specifically the improvement of gas se...
Tin oxide nanowires were successful prepared using thermal evaporation method. The crystal structure...
Quasi-one-dimensional nanostructures (so-called nanobelts or nanowires) of tin dioxide, obtained by ...
Metal oxide nanowires have been deposited on 100nm SiO2/Si substrates and SnO2 and ZnO single nanowi...