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Please use this identifier to cite or link to this item: https://elib.bsu.by/handle/123456789/292849
Title: Impact of the electrolyte and electrochemical parameters upon the morphology of anodized zinc oxide
Authors: Monaico, E. V.
Colibaba, G. V.
Keywords: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Issue Date: 2022
Publisher: Минск : БГУ
Citation: Материалы и структуры современной электроники : материалы X Междунар. науч. конф., Минск, 12–14 окт. 2022 г. / Белорус. гос. ун-т ; редкол.: В. Б. Оджаев (гл. ред.) [и др.]. – Минск : БГУ, 2022. – С. 316-321.
Abstract: The influence of the nature of used electrolyte as well as the applied potential in the anodization process of polar ZnO crystals were studied. Micro- and nanostructures obtained by electrochemical etching of O-face ZnO crystals were investigated by scanning electron microscopy. The morphology selectivity depending on the nature of the electrolyte was demonstrated. For the firs time, a columnar ZnO nanostructures obtained be electrochemical etching was reported. The transversal dimensions and their density depend on applied anodization potential. The obtained results will give the possibility for development of semiconductor nanotemplates based on anodized ZnO crystals
Description: Нанотехнологии, наноструктуры, квантовые явления. Наноэлектроника. Приборы на квантовых эффектах
URI: https://elib.bsu.by/handle/123456789/292849
ISBN: 978-985-881-440-3
Sponsorship: The authors acknowledge financial support from the Ministry of Education, Culture and Research of Moldova under the Grants #20.80009.5007.16 “Photosensitizers for applications in pharmaceutical medicine and photovoltaics” and #22.80013.5007.4BL “Nano- and hetero-structures based on zinc oxide and A3B5 compounds for optoelectronics, photonics and biosensorics”. E.M. acknowledge financial support for his postdoctoral grant #21.00208.5007.15/PD “Micro- and nano-engineering of semiconductor compounds based on electrochemical technologies for electronic and photonic applications”
Licence: info:eu-repo/semantics/openAccess
Appears in Collections:2022. Материалы и структуры современной электроники

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