The fabrication of chemical sensors based on one-dimensional (1D) metal oxide semiconductor (MOS) nanostructures with tailored geometries has rapidly advanced in the last two decades. Chemical sensitive 1D MOS nanostructures are usually configured as resistors whose conduction is altered by a charge-transfer process or as field-effect transistors (FET) whose properties are controlled by applying appropriate potentials to the gate. This chapter reviews the state-of-the-art research on chemical sensors based on 1D MOS nanostructures of the resistive and FET types. The chapter begins with a survey of the MOS and their 1D nanostructures with the greatest potential for use in the next generation of chemical sensors, which will be of very small s...
UnrestrictedMy research mainly covers three types of one-dimensional (1D) nanomaterials: metal oxide...
A novel one-dimensional nanostructure is studied. The gas sensing application was considered in deta...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
The continuous evolution of nanotechnology in these years led to the production of quasi-one dimensi...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
One-dimensional (1D) metal-oxide nanostructures are ideal systems for exploring a large number of no...
One-dimensional (1D) metal-oxide nanostructures are ideal systems for exploring a large number of no...
Day by day, the demand for portable, low cost, and efficient chemical/gas-sensing devices is increas...
Chemiresistive gas sensors have gained popularity in various fields including industry, agriculture,...
Recently; one-dimensional (1D) nanostructure field-effect transistors (FETs) have attracted much att...
This article provides a comprehensive review of recent (2008 and 2009) progress in gas sensors based...
The fabrication methods and the basic properties of the metal-oxide nanostructures referred as nanow...
This paper discusses sensor development based on metal oxide nanostructures and microsystems technol...
Over the years, metal oxide semiconductors are widely used in several sensor applications. Crystalli...
Abstract This paper focuses on the capabilities and development prospects of nanostructured metal ox...
UnrestrictedMy research mainly covers three types of one-dimensional (1D) nanomaterials: metal oxide...
A novel one-dimensional nanostructure is studied. The gas sensing application was considered in deta...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...
The continuous evolution of nanotechnology in these years led to the production of quasi-one dimensi...
Metal oxides are the most commonly used materials for chemical sensors, originally in the form of th...
One-dimensional (1D) metal-oxide nanostructures are ideal systems for exploring a large number of no...
One-dimensional (1D) metal-oxide nanostructures are ideal systems for exploring a large number of no...
Day by day, the demand for portable, low cost, and efficient chemical/gas-sensing devices is increas...
Chemiresistive gas sensors have gained popularity in various fields including industry, agriculture,...
Recently; one-dimensional (1D) nanostructure field-effect transistors (FETs) have attracted much att...
This article provides a comprehensive review of recent (2008 and 2009) progress in gas sensors based...
The fabrication methods and the basic properties of the metal-oxide nanostructures referred as nanow...
This paper discusses sensor development based on metal oxide nanostructures and microsystems technol...
Over the years, metal oxide semiconductors are widely used in several sensor applications. Crystalli...
Abstract This paper focuses on the capabilities and development prospects of nanostructured metal ox...
UnrestrictedMy research mainly covers three types of one-dimensional (1D) nanomaterials: metal oxide...
A novel one-dimensional nanostructure is studied. The gas sensing application was considered in deta...
It is almost a decade since the first presentation of metal oxide nanowires as chemical sensors. Sig...