The present Review opens with an overview of metal oxides and the description of their material properties. The first part mainly deals with various preparation techniques and growth mechanisms, which have been largely developed in the last few decades to fabricate different types of metal oxide nanostructures. The second part, on the other hand, will provide the Reader with an up-to-date summary of different applications in which metal oxides nanostructures have been successfully implemented and/or suggested. In particular, great attention will be dedicated to the implementation of metal oxide nanostructures for gas sensing as well as light emission applications, for which both working principles and integration, as well as the latest repo...
This article provides a comprehensive review of recent (2008 and 2009) progress in gas sensors based...
The features of the properties and creation of nanocomposite metal oxide materials, especially TiO2,...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...
Conductometric gas sensors facilitated by photons have been investigated for decades. Light illumina...
There has been a great interest in metal oxides nanostructures (such as ZnO, SnO2, etc.,) recently....
This review article is focused on the description of metal oxide single crystalline nanostructures u...
Abstract Gas sensing properties of metal oxide nanopowders (ZnO, TiO2, WO3, SnO2) with average diame...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Metal oxide nanoparticles have been widely utilized for the fabrication of functional gas sensors to...
Gas sensors are indispensable aspects of our life as it warns us about the dangerous gases in our en...
Recently one dimensional (1-D) nanostructured metal-oxides have attracted much attention because of ...
Over the years, metal oxide semiconductors are widely used in several sensor applications. Crystalli...
Metal oxide nanowires have become popular materials in gas sensing, and more generally in the field ...
We have obtained and studied the sensing properties of porous titania-based nanostructures. The mate...
This article provides a comprehensive review of recent (2008 and 2009) progress in gas sensors based...
The features of the properties and creation of nanocomposite metal oxide materials, especially TiO2,...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...
Conductometric gas sensors facilitated by photons have been investigated for decades. Light illumina...
There has been a great interest in metal oxides nanostructures (such as ZnO, SnO2, etc.,) recently....
This review article is focused on the description of metal oxide single crystalline nanostructures u...
Abstract Gas sensing properties of metal oxide nanopowders (ZnO, TiO2, WO3, SnO2) with average diame...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
Metal oxide sensors have been extensively developed over fifty years for the detection of toxic and ...
Metal oxide nanoparticles have been widely utilized for the fabrication of functional gas sensors to...
Gas sensors are indispensable aspects of our life as it warns us about the dangerous gases in our en...
Recently one dimensional (1-D) nanostructured metal-oxides have attracted much attention because of ...
Over the years, metal oxide semiconductors are widely used in several sensor applications. Crystalli...
Metal oxide nanowires have become popular materials in gas sensing, and more generally in the field ...
We have obtained and studied the sensing properties of porous titania-based nanostructures. The mate...
This article provides a comprehensive review of recent (2008 and 2009) progress in gas sensors based...
The features of the properties and creation of nanocomposite metal oxide materials, especially TiO2,...
A comparison is made between SnO2, ZnO, and TiO2 single-crystal nanowires and SnO2 polycrystalline n...