In this work Graphene Oxide (GO) and SnO2 nanowires (NWs) composite sensing performance were studied. Single crystal SnO2 NWs were directly grown by thermal evaporation method and GO was successfully synthesized using modified Hummers method. RF magnetron sputtered Pt particles were used as a catalyst for the growth of SnO2 NWs. Drop cast technique was used to deposited GO on top of the SnO2 NWs. FE-SEM (LEO 1525) was used to investigate the morphology of SnO2 NWs and GO. Fabricated sensors were tested towards various concentration of H-2 at different working temperatures. This GO/SnO2 hybrid sensors show a reversible response to H-2 at low operating temperature. (C) 2016 The Authors. Published by Elsevier Ltd
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
Abstract: One-pot polyol process was combined with metal organic decomposition (MOD) method to fabri...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
The microstructures of metal oxide-modified reduced graphene oxide (RGO) are expected to significant...
NO2 gas is a highly toxic gas and emitted from vehicles such as motocycles and internal engine trans...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
Nitric oxide (NO2) is one of the air pollutants that pose serious environmental concerns over the ye...
The analysis of ambient (home, office, outdoor) atmosphere in order to check the presence of dangero...
Breakthroughs in the synthesis of hybrid materials have led to the development of a plethora of chem...
A simple thermal evaporation method is presented for the growth of crystalline SnO2 nanowires at a l...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
Localized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate a burie...
AbstractLocalized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
Acetylene (C2H2) gas sensors were developed by synthesizing a reduced graphene oxide (rGO)-loaded Sn...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
Abstract: One-pot polyol process was combined with metal organic decomposition (MOD) method to fabri...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...
The microstructures of metal oxide-modified reduced graphene oxide (RGO) are expected to significant...
NO2 gas is a highly toxic gas and emitted from vehicles such as motocycles and internal engine trans...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
Nitric oxide (NO2) is one of the air pollutants that pose serious environmental concerns over the ye...
The analysis of ambient (home, office, outdoor) atmosphere in order to check the presence of dangero...
Breakthroughs in the synthesis of hybrid materials have led to the development of a plethora of chem...
A simple thermal evaporation method is presented for the growth of crystalline SnO2 nanowires at a l...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
Localized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate a burie...
AbstractLocalized growth of SnO2 nanowires on top of CMOS compatible micromembranes that incorporate...
We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging...
Acetylene (C2H2) gas sensors were developed by synthesizing a reduced graphene oxide (rGO)-loaded Sn...
Tin dioxide nanowires have been grown by thermal oxidation of sputtered thin films by means of a VLS...
Abstract: One-pot polyol process was combined with metal organic decomposition (MOD) method to fabri...
Developing metal oxide gas sensors for internet-of-things (IoT) and portable applications require lo...