We have obtained and studied the sensing properties of porous titania-based nanostructures. The materials have been prepared using cost-effective techniques. The morphological and structural analyses of the prepared materials have been performed. The sensing properties of the samples have been studied towards carbon monoxide. The obtained results demonstrate that the prepared structures are promising for the potential applications in the area of chemical sensors for the environmental monitoring
In this paper, we present the investigations on metal oxide-based gas sensors considering the works ...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)This work reports on nanoscale a...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...
Gas sensors are indispensable aspects of our life as it warns us about the dangerous gases in our en...
The present Review opens with an overview of metal oxides and the description of their material prop...
Increasing concern on health threat due to pollution or terrorist attacks stimulated the research on...
The preparation and structural characterization of titanium oxide nanowires as functional materials ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
The present contribution highlights some of the key results recently obtained by our research group...
We have developed innovative and efficient strategy for the preparation and improvement of sensing p...
The atmospheric pollutant monitoring is a present need that pushes the development of reliable and c...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
Preparation and characterization of different metal oxide (NiO, WO3, ZnO, SnO2 and Nb2O5) nanostruct...
In this paper, we present the investigations on metal oxide-based gas sensors considering the works ...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)This work reports on nanoscale a...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...
Gas sensors are indispensable aspects of our life as it warns us about the dangerous gases in our en...
The present Review opens with an overview of metal oxides and the description of their material prop...
Increasing concern on health threat due to pollution or terrorist attacks stimulated the research on...
The preparation and structural characterization of titanium oxide nanowires as functional materials ...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
The present contribution highlights some of the key results recently obtained by our research group...
We have developed innovative and efficient strategy for the preparation and improvement of sensing p...
The atmospheric pollutant monitoring is a present need that pushes the development of reliable and c...
Tin dioxide was the first material used to fabricate gas sensors, though many other metal oxides hav...
Increasing concern regarding health effects caused by air pollution, together with the limited spati...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
Preparation and characterization of different metal oxide (NiO, WO3, ZnO, SnO2 and Nb2O5) nanostruct...
In this paper, we present the investigations on metal oxide-based gas sensors considering the works ...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)This work reports on nanoscale a...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...