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Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures

Metal oxide p–n heterojunctions consisting of p-Cu(2)O/n-ZnO/n-ZnS nanostructures were deposited on an ITO substrate by three-step electrodeposition. The effect of ZnS layer deposition temperature on the properties of the heterojunction was investigated by different techniques. The Mott–Schottky ana...

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Autores principales: Bengas, Rayhena, Lahmar, Halla, Redha, Khelladi Mohamed, Mentar, Loubna, Azizi, Amor, Schmerber, Guy, Dinia, Aziz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9071846/
https://www.ncbi.nlm.nih.gov/pubmed/35528445
http://dx.doi.org/10.1039/c9ra04670d
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author Bengas, Rayhena
Lahmar, Halla
Redha, Khelladi Mohamed
Mentar, Loubna
Azizi, Amor
Schmerber, Guy
Dinia, Aziz
author_facet Bengas, Rayhena
Lahmar, Halla
Redha, Khelladi Mohamed
Mentar, Loubna
Azizi, Amor
Schmerber, Guy
Dinia, Aziz
author_sort Bengas, Rayhena
collection PubMed
description Metal oxide p–n heterojunctions consisting of p-Cu(2)O/n-ZnO/n-ZnS nanostructures were deposited on an ITO substrate by three-step electrodeposition. The effect of ZnS layer deposition temperature on the properties of the heterojunction was investigated by different techniques. The Mott–Schottky analysis confirmed the n-type conductivity for ZnO and ZnS and p-type conductivity for the Cu(2)O layer, respectively. Also, it showed a decrease of ZnS donor concentration with increasing deposition temperature. The X-ray diffraction (XRD) analysis confirms a pure phase of hexagonal ZnO, cubic ZnS and cubic Cu(2)O structures, respectively. The heterojunction with ZnS deposited at 60 °C shows high crystallinity. The morphological measurements by scanning electron microscopy (SEM) indicate that the deposition temperature has a significant influence on the morphology of ZnO and the atomic force microscopy (AFM) images revealed the improvement of Cu(2)O morphology by increasing the ZnS deposition temperature. The UV-Vis response shows strong absorption in the visible region and the profile of optical absorption spectra changes with the ZnS deposition temperature. The current–voltage (I–V) characteristics of the Au/p-Cu(2)O/n-ZnO/n-ZnS/ITO heterojunction display well-defined rectifying behavior for the heterojunction with ZnS deposited at 60 °C.
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spelling pubmed-90718462022-05-06 Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures Bengas, Rayhena Lahmar, Halla Redha, Khelladi Mohamed Mentar, Loubna Azizi, Amor Schmerber, Guy Dinia, Aziz RSC Adv Chemistry Metal oxide p–n heterojunctions consisting of p-Cu(2)O/n-ZnO/n-ZnS nanostructures were deposited on an ITO substrate by three-step electrodeposition. The effect of ZnS layer deposition temperature on the properties of the heterojunction was investigated by different techniques. The Mott–Schottky analysis confirmed the n-type conductivity for ZnO and ZnS and p-type conductivity for the Cu(2)O layer, respectively. Also, it showed a decrease of ZnS donor concentration with increasing deposition temperature. The X-ray diffraction (XRD) analysis confirms a pure phase of hexagonal ZnO, cubic ZnS and cubic Cu(2)O structures, respectively. The heterojunction with ZnS deposited at 60 °C shows high crystallinity. The morphological measurements by scanning electron microscopy (SEM) indicate that the deposition temperature has a significant influence on the morphology of ZnO and the atomic force microscopy (AFM) images revealed the improvement of Cu(2)O morphology by increasing the ZnS deposition temperature. The UV-Vis response shows strong absorption in the visible region and the profile of optical absorption spectra changes with the ZnS deposition temperature. The current–voltage (I–V) characteristics of the Au/p-Cu(2)O/n-ZnO/n-ZnS/ITO heterojunction display well-defined rectifying behavior for the heterojunction with ZnS deposited at 60 °C. The Royal Society of Chemistry 2019-09-16 /pmc/articles/PMC9071846/ /pubmed/35528445 http://dx.doi.org/10.1039/c9ra04670d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Bengas, Rayhena
Lahmar, Halla
Redha, Khelladi Mohamed
Mentar, Loubna
Azizi, Amor
Schmerber, Guy
Dinia, Aziz
Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title_full Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title_fullStr Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title_full_unstemmed Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title_short Electrochemical synthesis of n-type ZnS layers on p-Cu(2)O/n-ZnO heterojunctions with different deposition temperatures
title_sort electrochemical synthesis of n-type zns layers on p-cu(2)o/n-zno heterojunctions with different deposition temperatures
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9071846/
https://www.ncbi.nlm.nih.gov/pubmed/35528445
http://dx.doi.org/10.1039/c9ra04670d
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