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Thermionic electron emission from single carbon nanostructures and its applications in vacuum nanoelectronics

机译:单碳纳米结构的热电子发射及其在真空纳米电子学中的应用

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摘要

Nanoscale electron sources with high electron-emitting performance are of great interest in vacuum nanoelectronics. Resembling traditional thermionic emission sources based on a hot tungsten filament, a hot carbon nanotube or graphene can function as a nanoscale electron source because of its excellent thermal stability and electrical conductivity. In this article, studies of thermionic emission from single hot carbon nanostructures are overviewed, emphasizing their differences in physics from macroscopic thermionic emission as well as potential applications in vacuum nanoelectronics. Due to their low dimensionality, nanoscale size, and nonequilibrium electron distribution, Richardson's Law, which governs thermionic emission from macroscopic metals, breaks down in the case of thermionic emission from single carbon nanostructures, and an internal electric field in a carbon nanostructure can contribute directly to its thermionic emission. Graphene-based nanoscale thermionic emission sources, source arrays, and vacuum transistors have been fabricated and demonstrated to exhibit the advantages compared to those based on field emission. The advances imply the promise of realizing high-performance nanoscale electron sources and vacuum electronic devices based on thermionic emission.
机译:具有高电子发射性能的纳米级电子源在真空纳米电子学中备受关注。类似于基于热钨丝的传统热电子发射源,热碳纳米管或石墨烯由于其出色的热稳定性和导电性而可以用作纳米级电子源。在本文中,对来自单个热碳纳米结构的热电子发射的研究进行了概述,强调了它们与宏观热电子发射的物理差异以及在真空纳米电子学中的潜在应用。由于其尺寸低,纳米级尺寸和非平衡电子分布,控制宏观金属的热电子发射的理查森定律在单个碳纳米结构的热电子发射的情况下会分解,并且碳纳米结构中的内部电场可以直接起作用其热电子发射。已经制造出基于石墨烯的纳米级热电子发射源,源阵列和真空晶体管,并证明与基于场发射的那些相比,它们具有优势。这些进步暗示了基于热电子发射实现高性能纳米级电子源和真空电子设备的希望。

著录项

  • 来源
    《MRS bulletin》 |2017年第7期|493-499|共7页
  • 作者单位

    Peking Univ, Key Lab Phys & Chem Nanodevices, Dept Elect, Beijing, Peoples R China;

    Peking Univ, Key Lab Phys & Chem Nanodevices, Dept Elect, Beijing, Peoples R China;

    Peking Univ, Key Lab Phys & Chem Nanodevices, Dept Elect, Beijing, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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