Thermionic electron emission forms the basis of both electron sources for a variety of applications and a direct energy conversion process that is compact and scalable. The present study characterizes thermionic emission from boron-doped nanocrystalline diamond films with hydrogen and nitrophenyl surface termination layers. A hemispherical energy analyzer was used to measure electron energy distributions from the emitters at,elevated temperatures. Thermionic emission energy distributions, acquired at temperatures ranging from 700 to 1100 degrees C, reveal that emission occurs from regions of differing work functions. The relative ...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
abstract: In this dissertation, combined photo-induced and thermionic electron emission from low wor...
[[abstract]]In this experiment we have measured the temperature dependence of field emission charact...
Thermionic electron emission forms the basis of both electron sources for a variety of applications ...
ABSTRACT Thermionic electron emission provides a means of direct energy conversion. Some of the bene...
Diamond-based low-work function thermionic electron emitters are in high demand for applications ran...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
Thermionic emission relies on the low work function and negative electron affinity of the, often fun...
This work examines electron field-emission characteristics of polycrystalline diamond films at eleva...
Nitrogen-doped diamond films have been synthesized for application as a low-temperature thermionic f...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
abstract: In this dissertation, combined photo-induced and thermionic electron emission from low wor...
[[abstract]]In this experiment we have measured the temperature dependence of field emission charact...
Thermionic electron emission forms the basis of both electron sources for a variety of applications ...
ABSTRACT Thermionic electron emission provides a means of direct energy conversion. Some of the bene...
Diamond-based low-work function thermionic electron emitters are in high demand for applications ran...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
In the ongoing quest for energy production by nonconventional methods, energy conversion by vacuum a...
Thermionic emission relies on the low work function and negative electron affinity of the, often fun...
This work examines electron field-emission characteristics of polycrystalline diamond films at eleva...
Nitrogen-doped diamond films have been synthesized for application as a low-temperature thermionic f...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
Thin films of nanocrystalline diamond with thickness around 100 nm were deposited on highly doped p-...
abstract: In this dissertation, combined photo-induced and thermionic electron emission from low wor...
[[abstract]]In this experiment we have measured the temperature dependence of field emission charact...