Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Emission properties of impregnated cathode with nanoparticle films

View through CrossRef
The Ir nano particle thin film was grown by dcrect current magnetron sputtering at room temperature. Microstructure of thin films grown at different sputtering pressures were measured by scanning electron microscopy. The results show that the particle size of the films depends on the deposition rate in the nucleation stage of Ir films and the deposition rate can be well controlled by sputtering pressure. A new kind of cathodes are fabricated from 25% porous tungsten impregnated with 6∶1∶2-type barium calcium aluminate and coated with the nano particulate Ir thin film. The coating processes produces a film thickness of 200—500 nm and the cathodes are fired in hydrogen atmosphere for ten minutes at 1200℃ to further improve the coating microstructure. The cathodes have been studied with thermal electron microscope by which the electron-optical picture of a thermal emission cathode could be obtained. Time of flight mass spectrometer (ToFMS) has been used in a study of evaporation from impregnated cathodes. The chemical composition of evaporation of various impregnated cathodes have been measured by ToFMS. The variation of ion current of evaporants from S-type cathode and M-type cathode (coated with iridium) and n-type cathode (coated with iridium nano-particle thin film) with temperature and time have been studied and discussed. Emission current characteristics have been measured as a function of voltage and temperature.
Title: Emission properties of impregnated cathode with nanoparticle films
Description:
The Ir nano particle thin film was grown by dcrect current magnetron sputtering at room temperature.
Microstructure of thin films grown at different sputtering pressures were measured by scanning electron microscopy.
The results show that the particle size of the films depends on the deposition rate in the nucleation stage of Ir films and the deposition rate can be well controlled by sputtering pressure.
A new kind of cathodes are fabricated from 25% porous tungsten impregnated with 6∶1∶2-type barium calcium aluminate and coated with the nano particulate Ir thin film.
The coating processes produces a film thickness of 200—500 nm and the cathodes are fired in hydrogen atmosphere for ten minutes at 1200℃ to further improve the coating microstructure.
The cathodes have been studied with thermal electron microscope by which the electron-optical picture of a thermal emission cathode could be obtained.
Time of flight mass spectrometer (ToFMS) has been used in a study of evaporation from impregnated cathodes.
The chemical composition of evaporation of various impregnated cathodes have been measured by ToFMS.
The variation of ion current of evaporants from S-type cathode and M-type cathode (coated with iridium) and n-type cathode (coated with iridium nano-particle thin film) with temperature and time have been studied and discussed.
Emission current characteristics have been measured as a function of voltage and temperature.

Related Results

Absolute error analysis of virtual cathode measurement in a vacuum
Absolute error analysis of virtual cathode measurement in a vacuum
The virtual cathode is an important phenomenon in the process of thermionic emission, and it is widely present in a variety of electronic devices and systems such as vacuum tubes, ...
Alternative Entrances: Phillip Noyce and Sydney’s Counterculture
Alternative Entrances: Phillip Noyce and Sydney’s Counterculture
Phillip Noyce is one of Australia’s most prominent film makers—a successful feature film director with both iconic Australian narratives and many a Hollywood blockbuster under his ...
Fabrication of Ruthenium-Based Cathode Material/Solid Electrolyte Composites
Fabrication of Ruthenium-Based Cathode Material/Solid Electrolyte Composites
Introduction Oxide-based all-solid-state batteries (ASSBs) are considered safe due to their chemical stability and are attracting attention as a pow...
Spray Coated Nanocellulose Films Productions, Characterization and Application
Spray Coated Nanocellulose Films Productions, Characterization and Application
Nanocellulose (NC) is a biodegradable, renewable and sustainable material. It has strong potential to use as a functional material in various applications such as barriers, coating...
Effect of Sc<sub>2</sub>O<sub>3</sub> doping on thermal emission properties of rare-earth refractory yttrium salt cathode
Effect of Sc<sub>2</sub>O<sub>3</sub> doping on thermal emission properties of rare-earth refractory yttrium salt cathode
To improve the thermionic emission performance of the rare-earth refractory yttrium salt cathode used in the magnetron, the influence of Sc<sub>2</sub>O<sub>3<...
Role of Cathode-Electrolyte-Ferroelectric Interface for High Performance Lithium Ion Battery
Role of Cathode-Electrolyte-Ferroelectric Interface for High Performance Lithium Ion Battery
Next generation lithium ion battery(LIB) should be endowed with a performance of high-speed chargeability and dischargeability. LiCoO2is commercially used as a cathode material of ...
Experimental Investigation of a New Grid Cathode Design Method in Electrochemical Machining
Experimental Investigation of a New Grid Cathode Design Method in Electrochemical Machining
This paper focuses on the grid cathode design in electrochemical machining (ECM) in order to develop a new cathode design method for realizing a breakthrough: one cathode can produ...
Electron emission from pseudospark cathodes
Electron emission from pseudospark cathodes
The pseudospark cathode has the remarkable property of macroscopically homogeneous electron emission at very high current density (≳1 kA/cm2) over a large area (some cm2). The mode...

Back to Top