In this paper, we present a chemiresistive metal oxide (MOX) sensor for detection of hydrogen sulfide. Compared to the previous reports, the overall sensor performance was improved in multiple characteristics, including: sensitivity, selectivity, stability, activation time, response time, recovery time, and activation temperature. The superior sensor performance was attributed to the utilization of hybrid SnO2/TiO2 oxides as interactive catalytic layers deposited using a magnetron radio frequency (RF) sputtering technique. The unique advantage of the RF sputtering for sensor fabrication is the ability to create ultra-thin films with precise control of geometry, morphology and chemical composition of the product of synthesis. Chemiresistive ...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
The detection of Hydrogen sulfide (H2S) gas at room temperature measurement has gained interest owin...
Thin films composed of Au nanoparticles dispersed inside a TiO\u2082-NiO mixed oxide matrix are prep...
In this paper, we present a chemiresistive metal oxide (MOX) sensor for detection of hydrogen sulfid...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
In this present study we have developed the H2S gas sensors of metal oxide thin films such as SN3-(7...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
Nanocomposites of TiO2/SnO2 for hydrogen and ammonia detection are compared with complex oxides that...
Hydrogen Sulfide (H2S) gas sensors with very high sensitivity, selectivity, and quick responses are ...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
In past few decades due to fast industrialization and urbanization, the development of gas sensors h...
In this paper, we present an enhanced H2S gas sensor based on selectively loading Pt nanocatalyst on...
A nanocomposite material is presented that optimally combines the excellent gas sensitivity of SnO2 ...
: Hydrogen is largely adopted in industrial processes and is one of the leading options for storing ...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
The detection of Hydrogen sulfide (H2S) gas at room temperature measurement has gained interest owin...
Thin films composed of Au nanoparticles dispersed inside a TiO\u2082-NiO mixed oxide matrix are prep...
In this paper, we present a chemiresistive metal oxide (MOX) sensor for detection of hydrogen sulfid...
We report here an ultra high sensitive hydrogen sulfide micromachined gas sensor based on SnO2-Ag ga...
In this present study we have developed the H2S gas sensors of metal oxide thin films such as SN3-(7...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
An ultrahigh sensitive hydrogen sulfide gas sensor was developed utilizing micromachined nanocrystal...
Nanocomposites of TiO2/SnO2 for hydrogen and ammonia detection are compared with complex oxides that...
Hydrogen Sulfide (H2S) gas sensors with very high sensitivity, selectivity, and quick responses are ...
AbstractSnO2 chemical sensors were fabricated by two different methods. The first one was based on c...
In past few decades due to fast industrialization and urbanization, the development of gas sensors h...
In this paper, we present an enhanced H2S gas sensor based on selectively loading Pt nanocatalyst on...
A nanocomposite material is presented that optimally combines the excellent gas sensitivity of SnO2 ...
: Hydrogen is largely adopted in industrial processes and is one of the leading options for storing ...
Metal oxide gas sensors have many advantages over other solid-state gas monitoring devices, includin...
The detection of Hydrogen sulfide (H2S) gas at room temperature measurement has gained interest owin...
Thin films composed of Au nanoparticles dispersed inside a TiO\u2082-NiO mixed oxide matrix are prep...