首页> 外文会议>International Power Modulator Symposium >Uniform Electron Field Emission from a Carbon-nanotube-based Cold Cathode with Micro-imprinted Microstructures
【24h】

Uniform Electron Field Emission from a Carbon-nanotube-based Cold Cathode with Micro-imprinted Microstructures

机译:基于碳纳米管的冷阴极发射的均匀电子场发射,具有微型压印微结构

获取原文

摘要

Carbon nanotube (CNT) is an excellent field emitter due to its small diameter (1-40 nm), high aspect ratio (103), and high theoretical current limit (~1 muA/SWNT). The applications like CNT-FED or HPM require uniform distribution of field emission current, low turn-on field, and high current density. However, macroscopic cathodes made from CNTs for CNT-FED and microwave devices have been shown to exhibit low emission site density (103-104 sites/cm2) compared to CNT density (109-1010 /cm2 ), non-uniformity in emission sites distribution, and lower current density achievable than dispenser cathode. The non-uniformity of emission sites distribution is closely related to field screening effect at individual sites. Only the CNTs with the highest local electric field can emit current. The effect of field enhancement factor, which is a strong function of local microstructure and a result of manufacture method, is found to be the dominate factor in deciding field emission current characteristics, and its effects surpass the work function of CNT, or the types of CNTs. An artificial microstructure is designed to utilize electric field screening effect and enhance electric field penetration around every CNT site so that a similar level of enhanced local electric field can be assured in each pre-designated site. These microstructures can be made by FIB, photolithography, or a low-cost micro-imprint technique. CNTs are deposited onto the surface by electrophoresis method. MAGIC simulation indicates that an improved field uniformity and penetration can be achieved by such microstructures
机译:碳纳米管(CNT)是优良的场发射器由于其小的直径(1-40纳米),高纵横比(> 10 3 ),和较高的理论电流极限(〜1 MUA / SWNT) 。像CNT-FED或HPM的应用需要的场致发射电流,低开启电场,和高的电流密度的均匀分布。然而,从碳纳米管为CNT-FED和微波器件制成宏观阴极已被证明表现出低的发射点密度(10 3 -10 4 点/ cm 2相比CNT密度(10 9 -10 10 /厘米 2 ),非均匀性的发射部位的分布,和低于分配器阴极电流密度实现的。发射点分布的不均匀性密切相关,在个别网站领域的屏蔽效果。只有具有最高的局部电场的碳纳米管可以发出电流。的场增强因子的作用,这是本地微结构的强函数和制造方法的结果,发现在决定场发射电流特性的主导因子,且其效果超过CNT的功函数,或类型的碳纳米管。人工微结构设计,利用电场屏蔽效果,增强各地的每一个CNT网站电场穿透,从而增强局部电场的相似水平可以在各预先指定的网站放心。这些微结构可以通过FIB,光刻法,或者低成本的微压印技术来进行。碳纳米管通过电泳法沉积在表面上。 MAGIC模拟表明改进的电场均匀性和渗透可以通过这样的微结构来实现

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号