AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS

The article discusses the prospects of creating controlled field-effect cathodes based on arrays of columnar oxide niobium nanostructures for field emission displays. Geometrical models of field-emission cathodes and vacuum elements have been developed and investigated. The distribution of the elect...

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Main Authors: G. G. Gorokh, I. A. Taratyn, A. N. Pligovka, A. A. Lazavenka, A. I. Zakhlebayeva
Format: Article
Language:Russian
Published: Educational institution «Belarusian State University of Informatics and Radioelectronics» 2019-12-01
Series:Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki
Subjects:
Online Access:https://doklady.bsuir.by/jour/article/view/2078
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spelling doaj-7fa40d7d8305461ab7e654c6573ab7fa2021-07-28T16:19:57ZrusEducational institution «Belarusian State University of Informatics and Radioelectronics»Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki1729-76482019-12-0107 (125)515810.35596/1729-7648-2019-125-7-51-581268AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYSG. G. Gorokh0I. A. Taratyn1A. N. Pligovka2A. A. Lazavenka3A. I. Zakhlebayeva4Belarusian State University of Informatics and RadioelectronicsOJSC “Minsk Research Institute of Radiomaterials”Belarusian State University of Informatics and RadioelectronicsBelarusian State University of Informatics and RadioelectronicsBelarusian State University of Informatics and RadioelectronicsThe article discusses the prospects of creating controlled field-effect cathodes based on arrays of columnar oxide niobium nanostructures for field emission displays. Geometrical models of field-emission cathodes and vacuum elements have been developed and investigated. The distribution of the electric field in the vacuum device at various distances between the cathode and the anode, the applied voltages between them, the shape and microgeometry of the cathodes were obtained. The optimal geometric parameters of nanostructured autoelectronic cathodes and matrices of these were calculated based on the simulation. The technological route has been developed for the production of autoelectronic cathode matrices based on arrays of niobium-oxide columnar nanostructures formed by electrochemical anodization of Al/Nb thin-film system. The samples of controlled arrays of autoelectronic cathodes were fabricated and the current-voltage characteristics with interelectrode gap of 2, 5 and 10 μm in various electric modes with change in the electric field strength from 3 to 85 V/μm were studied. At 2 μm gap between the anode and cathode, the emission occurs at minimum threshold voltages, but it is characterized by limited current values. The increasing in the interelectrode gap allows rising the emission currents, however, the threshold voltages increase. In the pulsed mode, the large emission currents are achieved. The threshold voltage of autoelectronic cathode matrices with interelectrode gap of 5 μm was 9.16 V, the maximum currents reached 350 μA at voltage of 22.5 V. In the pulsed mode, the emission arose at 11.06 V, the maximum current reached 1500 μA at 40 V.https://doklady.bsuir.by/jour/article/view/2078autoelectronic cathodesniobium metal oxidemicrodisplaysintegrated vacuum elements
collection DOAJ
language Russian
format Article
sources DOAJ
author G. G. Gorokh
I. A. Taratyn
A. N. Pligovka
A. A. Lazavenka
A. I. Zakhlebayeva
spellingShingle G. G. Gorokh
I. A. Taratyn
A. N. Pligovka
A. A. Lazavenka
A. I. Zakhlebayeva
AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki
autoelectronic cathodes
niobium metal oxide
microdisplays
integrated vacuum elements
author_facet G. G. Gorokh
I. A. Taratyn
A. N. Pligovka
A. A. Lazavenka
A. I. Zakhlebayeva
author_sort G. G. Gorokh
title AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
title_short AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
title_full AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
title_fullStr AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
title_full_unstemmed AUTOELECTRONIC CATHODES BASED ON ARRAYS OF NIOBIUM-OXIDE COLUMNAR NANOSTRUCTURES FOR FIELD EMISSION DISPLAYS
title_sort autoelectronic cathodes based on arrays of niobium-oxide columnar nanostructures for field emission displays
publisher Educational institution «Belarusian State University of Informatics and Radioelectronics»
series Doklady Belorusskogo gosudarstvennogo universiteta informatiki i radioèlektroniki
issn 1729-7648
publishDate 2019-12-01
description The article discusses the prospects of creating controlled field-effect cathodes based on arrays of columnar oxide niobium nanostructures for field emission displays. Geometrical models of field-emission cathodes and vacuum elements have been developed and investigated. The distribution of the electric field in the vacuum device at various distances between the cathode and the anode, the applied voltages between them, the shape and microgeometry of the cathodes were obtained. The optimal geometric parameters of nanostructured autoelectronic cathodes and matrices of these were calculated based on the simulation. The technological route has been developed for the production of autoelectronic cathode matrices based on arrays of niobium-oxide columnar nanostructures formed by electrochemical anodization of Al/Nb thin-film system. The samples of controlled arrays of autoelectronic cathodes were fabricated and the current-voltage characteristics with interelectrode gap of 2, 5 and 10 μm in various electric modes with change in the electric field strength from 3 to 85 V/μm were studied. At 2 μm gap between the anode and cathode, the emission occurs at minimum threshold voltages, but it is characterized by limited current values. The increasing in the interelectrode gap allows rising the emission currents, however, the threshold voltages increase. In the pulsed mode, the large emission currents are achieved. The threshold voltage of autoelectronic cathode matrices with interelectrode gap of 5 μm was 9.16 V, the maximum currents reached 350 μA at voltage of 22.5 V. In the pulsed mode, the emission arose at 11.06 V, the maximum current reached 1500 μA at 40 V.
topic autoelectronic cathodes
niobium metal oxide
microdisplays
integrated vacuum elements
url https://doklady.bsuir.by/jour/article/view/2078
work_keys_str_mv AT gggorokh autoelectroniccathodesbasedonarraysofniobiumoxidecolumnarnanostructuresforfieldemissiondisplays
AT iataratyn autoelectroniccathodesbasedonarraysofniobiumoxidecolumnarnanostructuresforfieldemissiondisplays
AT anpligovka autoelectroniccathodesbasedonarraysofniobiumoxidecolumnarnanostructuresforfieldemissiondisplays
AT aalazavenka autoelectroniccathodesbasedonarraysofniobiumoxidecolumnarnanostructuresforfieldemissiondisplays
AT aizakhlebayeva autoelectroniccathodesbasedonarraysofniobiumoxidecolumnarnanostructuresforfieldemissiondisplays
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