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Nanotube field electron emission: principles, development, and applications

机译:纳米管场电子发射:原理、发展和应用

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摘要

There is a growing trend to apply field emission (FE) electron sources in vacuum electronic devices due to their fast response, high efficiency and low energy consumption compared to thermionic emission ones. Carbon nanotubes (CNTs) have been regarded as a promising class of electron field emitters since the 1990s and have promoted the development of FE technology greatly because of their high electrical and thermal conductivity, chemical stability, high aspect ratio and small size. Recent studies have shown that FE from CNTs has the potential to replace conventional thermionic emission in many areas and that it exhibits advanced features in practical applications. Consequently, FE from nanotubes and applications thereof have attracted much attention. This paper provides a comprehensive review of both recent advances in CNT field emitters and issues related to applications of CNT based FE. FE theories and principles are introduced, and the early development of field emitters is related. CNT emitter types and their FE performance are discussed. The current situation for applications based on nanotube FE is reviewed. Although challenges remain, the tremendous progress made in CNT FE over the past ten years indicates the field's development potential.
机译:与热离子发射电子设备相比,真空电子设备具有响应速度快、效率高、能耗低等特点,因此在真空电子设备中应用场发射(FE)电子源的趋势越来越大。碳纳米管(CNTs)自1990年代以来一直被认为是一类很有前途的电子场发射体,由于其高导电性和导热性、化学稳定性、高纵横比和小尺寸,极大地推动了有限元技术的发展。最近的研究表明,碳纳米管的有限元在许多领域具有取代传统热离子发射的潜力,并且在实际应用中表现出先进的特性。因此,纳米管中的有限元及其应用备受关注。本文全面综述了CNT场发射器的最新进展以及CNT基有限元应用相关问题。介绍了有限元的理论和原理,并介绍了场发射器的早期发展。讨论了CNT发射极类型及其有限元性能。综述了基于纳米管有限元的应用现状。尽管挑战依然存在,但CNT FE在过去十年中取得的巨大进步表明了该领域的发展潜力。

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