Field emission electron sources in vacuum electronics are largely considered to achieve faster response, higher efficiency and lower energy consumption in comparison with conventional thermionic emitters. Carbon nanotubes had a leading role in renewing attention to field emission technologies in the early 1990s, due to their exceptional electron emitting properties enabled by their large aspect ratio, high electrical conductivity, and thermal and chemical stability. In the last decade, the search for improved emitters has been extended to several carbon nanostructures, comprising carbon nanotubes, either individual or films, diamond structures, graphitic materials, graphene, etc. Here, we review the main results in the development of carbon...
Carbon nanotube (CNT) possesses various unique properties such as a needle-like shape with nanometer...
Technological advances in microfabrication has resulted in a renewed interest in vacuum microelectro...
ue to their high aspect ratio, small tip radius, excellent chemical stabil-ity, high thermal conduct...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
The graphitic nanocarbon allotropes-namely, the fullerenes, graphene, and carbon nanotubes-have attr...
This paper details the use of carbon nanotubes and graphene for key field emission applications. Her...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
Today the most mature technology to produce gated micro field electron emitter arrays is the so-call...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
Carbon nanotubes (CNT) were firstly discovered by Iijima in 1991. An ideal nanotube can be conside...
Carbon nanotube (CNT) possesses various unique properties such as a needle-like shape with nanometer...
Technological advances in microfabrication has resulted in a renewed interest in vacuum microelectro...
ue to their high aspect ratio, small tip radius, excellent chemical stabil-ity, high thermal conduct...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
Field emission electron sources in vacuum electronics are largely considered to achieve faster respo...
The graphitic nanocarbon allotropes-namely, the fullerenes, graphene, and carbon nanotubes-have attr...
This paper details the use of carbon nanotubes and graphene for key field emission applications. Her...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
Today the most mature technology to produce gated micro field electron emitter arrays is the so-call...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
The electron field emission properties of different graphitic and diamond-like nanostructures films ...
Carbon nanotubes (CNT) were firstly discovered by Iijima in 1991. An ideal nanotube can be conside...
Carbon nanotube (CNT) possesses various unique properties such as a needle-like shape with nanometer...
Technological advances in microfabrication has resulted in a renewed interest in vacuum microelectro...
ue to their high aspect ratio, small tip radius, excellent chemical stabil-ity, high thermal conduct...