Exact(3)
In a field emission experiment, a nanomanipulator in a scanning electron microscope (SEM) is used in order to measure field emission while precisely controlling the distance between the anode and cathode (field emitter).
One-dimensional (1-D) and quasi 1-D nanostructures, due to their high crystal quasi 1-Dlarge aspect ratio ananostructuresare well known as promising candueatos for applicatheir related to cold cathigh, field emission of elecrystal[1].
By investigating the morphologies and microstructures of the cathode deposits prepared by self-sustained arc discharge between graphite rods, we consider that there are two electron emission mechanisms occurring on the cathode: field emission and thermionic emission.
Similar(57)
Stray magnetic cathode fields were found analytically.
Our group has pioneered the development of miniature electron ionization sources combining MEMS fabricated structures with integrated carbon nanotube (CNT) cold-cathode field emitters.
The excess of the fluid was removed by wicking it off with an adsorbent paper, and then, it was visualized under a Hitachi S4700 cold-cathode field emission SEM [FESEM] (Hitachi High-Technologies Corporation, Minato-ku, Tokyo, Japan).
By placing the cathode flow field pattern on the anode flow field pattern, four zones are defined and the role of these areas on the performance of each cell at concentrations of 2 to 5 molar are investigated.
This study optimizes the cathode flow field for a single serpentine PEM fuel cell with 5 channels using the heights of channels 2 5 as search parameters.
In this study, the cathode flow-field of a parallel flow-field PEM fuel cell was optimized using a sub-channel.
Isothermal two- and three-dimensional polymer electrolyte membrane (PEM) fuel cell cathode flow field models were implemented to study the behavior of reactant and reaction product gas flow in a parallel channel flow field.
The modified cold cathode saddle field ion source operates at low gas pressure and requires neither magnetic field nor filament.
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