Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique

An improved technique for preparing glass-insulated microwires of highly volatile materials has been proposed, developed, and tested; owing to the isolation of the material from the environment, this technique provides the formation of a microwire with physical parameters corresponding to those of t...

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Autores principales: Meglei, Dragoş, Nikolaeva, Albina, Konopko, Leonid, Alexeeva, Svetlana, Bodiul, Pavel
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Publicado: D.Ghitu Institute of Electronic Engineering and Nanotechnologies 2017
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Acceso en línea:https://doaj.org/article/c0d17d9f743e420bb68add8a28ae89a1
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spelling oai:doaj.org-article:c0d17d9f743e420bb68add8a28ae89a12021-11-21T11:57:00ZTemperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique537.622+538.92537-63651810-648Xhttps://doaj.org/article/c0d17d9f743e420bb68add8a28ae89a12017-07-01T00:00:00Zhttps://mjps.nanotech.md/archive/2017/article/71452https://doaj.org/toc/1810-648Xhttps://doaj.org/toc/2537-6365An improved technique for preparing glass-insulated microwires of highly volatile materials has been proposed, developed, and tested; owing to the isolation of the material from the environment, this technique provides the formation of a microwire with physical parameters corresponding to those of the starting material. The microwire preparation technique has been tested using a bismuth telluride (Bi2Te3) alloy. The thermopower and conductivity of the Bi2Te3 microwire have been measure in a temperature range of 10–300 K. The derived data for Bi2Te3 in the form of a microwire and a bulk crystal have been compared.  Meglei, DragoşNikolaeva, AlbinaKonopko, LeonidAlexeeva, SvetlanaBodiul, PavelD.Ghitu Institute of Electronic Engineering and NanotechnologiesarticlePhysicsQC1-999ElectronicsTK7800-8360ENMoldavian Journal of the Physical Sciences, Vol 16, Iss 1-2, Pp 64-69 (2017)
institution DOAJ
collection DOAJ
language EN
topic Physics
QC1-999
Electronics
TK7800-8360
spellingShingle Physics
QC1-999
Electronics
TK7800-8360
Meglei, Dragoş
Nikolaeva, Albina
Konopko, Leonid
Alexeeva, Svetlana
Bodiul, Pavel
Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
description An improved technique for preparing glass-insulated microwires of highly volatile materials has been proposed, developed, and tested; owing to the isolation of the material from the environment, this technique provides the formation of a microwire with physical parameters corresponding to those of the starting material. The microwire preparation technique has been tested using a bismuth telluride (Bi2Te3) alloy. The thermopower and conductivity of the Bi2Te3 microwire have been measure in a temperature range of 10–300 K. The derived data for Bi2Te3 in the form of a microwire and a bulk crystal have been compared.  
format article
author Meglei, Dragoş
Nikolaeva, Albina
Konopko, Leonid
Alexeeva, Svetlana
Bodiul, Pavel
author_facet Meglei, Dragoş
Nikolaeva, Albina
Konopko, Leonid
Alexeeva, Svetlana
Bodiul, Pavel
author_sort Meglei, Dragoş
title Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
title_short Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
title_full Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
title_fullStr Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
title_full_unstemmed Temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
title_sort temperature dependences of the kinetic coefficients of a bismuth telluride microwave prepared by a novel technique
publisher D.Ghitu Institute of Electronic Engineering and Nanotechnologies
publishDate 2017
url https://doaj.org/article/c0d17d9f743e420bb68add8a28ae89a1
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