Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films

International journal of Thin Solid Films,Volume No. 472,Issue No.1,Page No.84-89

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Autori principali: Ilori, Olusoji O., Eleruja, Adebola Marcus, Osasona, O., Egharevba, G.O
Natura: Periodico
Lingua:inglese
Pubblicazione: International journal of Thin Solid Films 2023
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Accesso online:https://ir.oauife.edu.ng/123456789/5493
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author Ilori, Olusoji O.
Eleruja, Adebola Marcus
Osasona, O.
Egharevba, G.O
author_facet Ilori, Olusoji O.
Eleruja, Adebola Marcus
Osasona, O.
Egharevba, G.O
author_sort Ilori, Olusoji O.
collection DSpace
description International journal of Thin Solid Films,Volume No. 472,Issue No.1,Page No.84-89
format Journal
id oai:ir.oauife.edu.ng:123456789-5493
institution My University
language English
publishDate 2023
publisher International journal of Thin Solid Films
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spelling oai:ir.oauife.edu.ng:123456789-54932023-05-13T17:48:31Z Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films Ilori, Olusoji O. Eleruja, Adebola Marcus Osasona, O. Egharevba, G.O metallorganic chemical vapour precursor molybdenum monoxide International journal of Thin Solid Films,Volume No. 472,Issue No.1,Page No.84-89 Thin films of molybdenum monoxide were deposited by metallorganic chemical vapour deposition and characterized using Rutherdford backscattering spectroscopy, Fourier Transformed Infrared and UV–Visible spectroscopies, X-ray diffraction, van der Pauw conductivity measurement and impedance spectroscopy measurement. MoO2(C5H7O2)2 was used as a precursor. Results show that the film is crystalline and semiconducting. Optical characterization gave an energy gap of 3.02 eV. DC conductivity measurements show the conductivity mechanism to be that of small polaron hopping with an activation energy of 0.992 eV and also the existence of a sharp transition in conductivity at about 450 °C. Impedance data show that the film has two conductivity phases 2023-05-13T17:48:30Z 2023-05-13T17:48:30Z 2005-01 Journal 10.1016 https://ir.oauife.edu.ng/123456789/5493 en text/plain International journal of Thin Solid Films
spellingShingle metallorganic chemical vapour
precursor
molybdenum monoxide
Ilori, Olusoji O.
Eleruja, Adebola Marcus
Osasona, O.
Egharevba, G.O
Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title_full Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title_fullStr Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title_full_unstemmed Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title_short Preparation and characterization of metallorganic chemical vapour deposited molybdenum (II) oxide (MoO) thin films
title_sort preparation and characterization of metallorganic chemical vapour deposited molybdenum ii oxide moo thin films
topic metallorganic chemical vapour
precursor
molybdenum monoxide
url https://ir.oauife.edu.ng/123456789/5493
work_keys_str_mv AT iloriolusojio preparationandcharacterizationofmetallorganicchemicalvapourdepositedmolybdenumiioxidemoothinfilms
AT elerujaadebolamarcus preparationandcharacterizationofmetallorganicchemicalvapourdepositedmolybdenumiioxidemoothinfilms
AT osasonao preparationandcharacterizationofmetallorganicchemicalvapourdepositedmolybdenumiioxidemoothinfilms
AT egharevbago preparationandcharacterizationofmetallorganicchemicalvapourdepositedmolybdenumiioxidemoothinfilms