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The field emission behaviors of multi-walled carbon nanotubes (CNTs) electron source are investigated. The CNT emitters were grown directly on the Ni alloy substrate by the chemical vaopor deposition. Anode current 41 µA under 310 V gate voltage with the electron transmission rate of about 70–75%, only about 10% lower than the gate transparency. The electric field generated from the anode could penetrate...
Carbon nanotube (CNT) cathode is considered a hopeful new cathode for various vacuum electronics devices, and the most important specifications are turn-on field and current density. One factor that affects turn-on field most is the Schottky barrier between CNT and the metal electrode in CNT cathode. We manage to reduce this barrier by using metal-CNT hot-bonding process and found the turn-on field...
In this paper, we demonstrate enhanced field emission properties from MWNT emitters grown directly on the 80/20 NiCr alloy surface due to the grain boundary effect. The elemental segregation was clearly demonstrated by AES elemental mapping, where Cr and O surface segregation inhibited MWNT growth. The potential for this simple process is that it may be employed for fabricating CNT emitters without...
Carbon Nanotube (CNT) is an excellent field emission source, and is widely explored in applications like sensors, AFM probes, cathodes for Carbon Nanotube Field Emission Display (CNT-FED), and cathodes for microwave device. The requirements on field emission characteristics for these applications vary, but it is often necessary to attach CNT onto a metal electrode surface. When CNT is grown directly...
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