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Carbon-based field emitters: Properties and applications. / Egorov, Nikolay V.; Sheshin, Evgeny P.

MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES. ред. / G Gaertner; W Knapp; RG Forbes. Springer Nature, 2020. стр. 449-528 (Topics in Applied Physics; Том 135).

Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийглава/разделнаучнаяРецензирование

Harvard

Egorov, NV & Sheshin, EP 2020, Carbon-based field emitters: Properties and applications. в G Gaertner, W Knapp & RG Forbes (ред.), MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES. Topics in Applied Physics, Том. 135, Springer Nature, стр. 449-528. https://doi.org/10.1007/978-3-030-47291-7_10

APA

Egorov, N. V., & Sheshin, E. P. (2020). Carbon-based field emitters: Properties and applications. в G. Gaertner, W. Knapp, & RG. Forbes (Ред.), MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES (стр. 449-528). (Topics in Applied Physics; Том 135). Springer Nature. https://doi.org/10.1007/978-3-030-47291-7_10

Vancouver

Egorov NV, Sheshin EP. Carbon-based field emitters: Properties and applications. в Gaertner G, Knapp W, Forbes RG, Редакторы, MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES. Springer Nature. 2020. стр. 449-528. (Topics in Applied Physics). https://doi.org/10.1007/978-3-030-47291-7_10

Author

Egorov, Nikolay V. ; Sheshin, Evgeny P. / Carbon-based field emitters: Properties and applications. MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES. Редактор / G Gaertner ; W Knapp ; RG Forbes. Springer Nature, 2020. стр. 449-528 (Topics in Applied Physics).

BibTeX

@inbook{f149b71cb2aa460b9f75390f6741c38c,
title = "Carbon-based field emitters: Properties and applications",
abstract = "Field emission is one of the most promising areas of vacuum nano- and microelectronics. This chapter reviews current achievements and problems in studying carbon-based field emitters. It is a detailed elaboration of topics partly addressed in the authors{\textquoteright} textbook “Field Emission Electronics”. The review is multipartite. The first part gives general information about carbon-based materials, describing their structures, manufacturing methods for field emission cathodes, and basic features. The second part considers and analyzes some special modern electron emission theory that applies to field emission from carbon-based materials. This is followed by results on the field emission properties of different forms of carbon-based materials. The last part features applications and technological devices using carbon-based field emission cathodes, including descriptions of devices and their design, and prospects for further development. Here, the authors pay particular attention to their own papers on these topics.",
keywords = "NANOTUBE ELECTRON SOURCES, EMISSION CATHODES, SILICON-CARBIDE, GRAPHENE, ENHANCEMENT, DISPLAY, SURFACE, PHYSICS, DESIGN, FIBERS",
author = "Egorov, {Nikolay V.} and Sheshin, {Evgeny P.}",
note = "Funding Information: Acknowledgements The authors are grateful to Richard G. Forbes, Konstantin Nikiforov, and Georg Gaertner for critical reading of their manuscript and for valuable suggestions. The reported study was funded by RFBR, project number 20-07-01086. Publisher Copyright: {\textcopyright} 2020, Springer Nature Switzerland AG. Copyright: Copyright 2020 Elsevier B.V., All rights reserved.",
year = "2020",
doi = "10.1007/978-3-030-47291-7_10",
language = "English",
isbn = "978-3-030-47290-0",
series = "Topics in Applied Physics",
publisher = "Springer Nature",
pages = "449--528",
editor = "G Gaertner and W Knapp and RG Forbes",
booktitle = "MODERN DEVELOPMENTS IN VACUUM ELECTRON SOURCES",
address = "Germany",

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RIS

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PY - 2020

Y1 - 2020

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AB - Field emission is one of the most promising areas of vacuum nano- and microelectronics. This chapter reviews current achievements and problems in studying carbon-based field emitters. It is a detailed elaboration of topics partly addressed in the authors’ textbook “Field Emission Electronics”. The review is multipartite. The first part gives general information about carbon-based materials, describing their structures, manufacturing methods for field emission cathodes, and basic features. The second part considers and analyzes some special modern electron emission theory that applies to field emission from carbon-based materials. This is followed by results on the field emission properties of different forms of carbon-based materials. The last part features applications and technological devices using carbon-based field emission cathodes, including descriptions of devices and their design, and prospects for further development. Here, the authors pay particular attention to their own papers on these topics.

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