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A novel triode-type carbon nanotube field emission micro-cathode fabricated by using electrochemical and micromachining

机译:通过使用电化学和微机械制造的一种新型三极型碳纳米管场发射微观阴极

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We report here an effective method for the fabrication of a large number of carbon nanotube (CNT) triode-type micro-cathodes. Our technique combines composite electroplating and micromachining, avoiding the tedious direct growth and the screen-printing procedures conventionally used to fabricate such structures. The emitter structure is characterized by uniform diameters and heights, as well as by high mechanical stability. In the structure, the leakage current to the gate can be reduced to near zero by coating the polysilicon on the gate. Field emission testing results show that the micro cathodes have quite good field-emission properties such as high current density (15mA/cm2 at an applied electric field of 12Vμm-1), low turn-on field (2.4 V/μm), and good stability (109 h for 10% degradation of current density from 400μA/cm2).
机译:这里向此报告了制造大量碳纳米管(CNT)三极管型微阴极的有效方法。我们的技术结合了复合电镀和微机械,避免了繁琐的直接生长和常规用于制造这种结构的丝网印刷程序。发射极结构的特征在于均匀的直径和高度,以及高机械稳定性。在该结构中,通过在栅极上涂覆多晶硅,可以将栅极的漏电流减小到接近零。场发射检测结果表明,微阴极具有相当良好的现场 - 发射特性,如高电流密度(在12Vμm-1的施加电场处为15mA / cm2),低开启场(2.4 V /μm),良好稳定性(109小时,电流密度从400μA/ cm2降低10%)。

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