首页> 外文期刊>Journal of Vacuum Science & Technology. B, Microelectronics and Nanometer Structures >Improved field-emission characteristics of a multiwalled carbon-nanotube cathode by argon plasma pretreatment and krypton-fluoride laser irradiation
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Improved field-emission characteristics of a multiwalled carbon-nanotube cathode by argon plasma pretreatment and krypton-fluoride laser irradiation

机译:氩等离子体预处理和氟化k激光辐照改善多壁碳纳米管阴极的场发射特性

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摘要

An effect of argon (Ar) plasma pretreatment, followed by krypton-fluoride (KrF) laser irradiation, of multiwalled carbon-nanotube (MWCNT) cathodes on field-emission (FE) characteristics was investigated. With an Ar plasma pretreatment of 100 W, the FE current density was increased to 32.6 mA/cm~2 at an electric field of 4.92 V/μm after laser irradiation, the value of which was about 30 times higher than the current density without plasma pretreatment. The emission-site density (ESD) was also increased by 25 times by a plasma pretreatment of 100 W. However, the further increase in plasma power at and above 150 W deteriorated both FE characteristics and ESD, which was due to the decrease in the number of MWCNT emission sites.
机译:研究了多壁碳纳米管(MWCNT)阴极的氩(Ar)等离子体预处理,氟化k(KrF)激光辐照对场发射(FE)特性的影响。进行100 W的Ar等离子体预处理后,在4.92 V /μm的电场下,激光辐照后的FE电流密度增加到32.6 mA / cm〜2,该值是没有等离子体时的电流密度的30倍左右预处理。通过100 W的等离子体预处理,发射位密度(ESD)也增加了25倍。但是,在150 W及更高功率下,等离子体功率的进一步增加使FE特性和ESD均恶化,这是由于等离子体的降低所致。 MWCNT发射点的数量。

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