It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Significant advances have been made both in terms of preparation procedures and their integration into functional sensing devices, whilst the progress in their fundamental understanding of functional properties has been slow. In fact, the full integration still remains a challenge that has been wisely approached in different ways. In this article we review the most recent developments in bottom up and top down approaches for applications of chemical sensors
In recent years, engineered nanostructure assemblies such as nanowire arrays have attracted much res...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
The fabrication methods and the basic properties of the metal-oxide nanostructures referred as nanow...
Metal oxides are emerging as important active materials for applications such as sensors. Recent ad...
Chemical/gas sensors are playing and will play a crucial role in smart building, smart houses, envir...
Metal oxide 1D nanowires are probably the most promising structures to develop cheap stable and sele...
Metal oxide 1D nanowires are probably the most promising structures to develop cheap stable and sele...
Day by day, the demand for portable, low cost, and efficient chemical/gas-sensing devices is increas...
Metal oxide nanowires have become popular materials in gas sensing, and more generally in the field ...
Abstract Chemical/gas sensors are playing and will play a crucial role in smart building, smart hous...
Metal oxides (MOXs), in the form of nanowires, have proved to be an excellent active sensing layer o...
This paper discusses sensor development based on metal oxide nanostructures and microsystems technol...
Zinc oxide nanowires were configured as n-channel field-effect transistors. These transistors were i...
In recent years, engineered nanostructure assemblies such as nanowire arrays have attracted much res...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
The fabrication methods and the basic properties of the metal-oxide nanostructures referred as nanow...
Metal oxides are emerging as important active materials for applications such as sensors. Recent ad...
Chemical/gas sensors are playing and will play a crucial role in smart building, smart houses, envir...
Metal oxide 1D nanowires are probably the most promising structures to develop cheap stable and sele...
Metal oxide 1D nanowires are probably the most promising structures to develop cheap stable and sele...
Day by day, the demand for portable, low cost, and efficient chemical/gas-sensing devices is increas...
Metal oxide nanowires have become popular materials in gas sensing, and more generally in the field ...
Abstract Chemical/gas sensors are playing and will play a crucial role in smart building, smart hous...
Metal oxides (MOXs), in the form of nanowires, have proved to be an excellent active sensing layer o...
This paper discusses sensor development based on metal oxide nanostructures and microsystems technol...
Zinc oxide nanowires were configured as n-channel field-effect transistors. These transistors were i...
In recent years, engineered nanostructure assemblies such as nanowire arrays have attracted much res...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...
This article provides an overview of the recent development of ZnO nanowires (NWs) for chemoresistiv...