Cargando…

Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films

[Image: see text] Stannous-based perovskite oxide materials are regarded as an important class of transparent conductive oxides for various fields of application. Enhancing the properties of such materials and facilitating the synthesis process are considered major challenging aspects for proper dev...

Descripción completa

Detalles Bibliográficos
Autores principales: Shaili, Hamza, Salmani, Elmehdi, Beraich, Mustapha, Zidane, Mustapha, Taibi, M’hamed, Rouchdi, Mustapha, Ez-Zahraouy, Hamid, Hassanain, Najem, Mzerd, Ahmed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8655781/
https://www.ncbi.nlm.nih.gov/pubmed/34901603
http://dx.doi.org/10.1021/acsomega.1c04054
_version_ 1784612143753068544
author Shaili, Hamza
Salmani, Elmehdi
Beraich, Mustapha
Zidane, Mustapha
Taibi, M’hamed
Rouchdi, Mustapha
Ez-Zahraouy, Hamid
Hassanain, Najem
Mzerd, Ahmed
author_facet Shaili, Hamza
Salmani, Elmehdi
Beraich, Mustapha
Zidane, Mustapha
Taibi, M’hamed
Rouchdi, Mustapha
Ez-Zahraouy, Hamid
Hassanain, Najem
Mzerd, Ahmed
author_sort Shaili, Hamza
collection PubMed
description [Image: see text] Stannous-based perovskite oxide materials are regarded as an important class of transparent conductive oxides for various fields of application. Enhancing the properties of such materials and facilitating the synthesis process are considered major challenging aspects for proper device applications. In the present paper, a comprehensive and detailed study of the properties of spray-coated CaSnO(3) thin films onto the Si(100) substrate is reported. In addition, the substrate effect and the incorporation of rare-earth Nd(3+) on engineering the characteristics of CaSnO(3) thin films annealed at 800 °C are included. X-ray diffraction (XRD) analysis results revealed the orthorhombic structure of all the samples with an expansion of lattice spacing as the substitution of Nd at the Ca site increased. The Raman and FT-IR analysis further confirmed the structural results collected via the XRD analysis. Surface scanning using field-emission scanning electron microscopy revealed the formation of quasi-orthorhombic CaSnO(3) grains with an increase in size as dopant content increased. Energy-dispersive X-ray analysis allowed quantification of the elements, while atomic mapping permitted visualizing their distribution along the surfaces. UV–visible spectroscopy and first-principles calculations using density functional theory (DFT) were conducted, and a thorough investigation of the optical and electronic properties of the pure material upon Nd(3+) insertion was provided. Electrical properties collected at room temperature revealed a growing conductivity upon doping ratio increase with a simultaneous enhancement in the carrier concentrations and mobility. The findings of the present work will help facilitate the synthesis procedure of large-area stannous-based perovskite oxide thin films through simple and efficient chemical solution methods for optoelectronic device applications.
format Online
Article
Text
id pubmed-8655781
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-86557812021-12-10 Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films Shaili, Hamza Salmani, Elmehdi Beraich, Mustapha Zidane, Mustapha Taibi, M’hamed Rouchdi, Mustapha Ez-Zahraouy, Hamid Hassanain, Najem Mzerd, Ahmed ACS Omega [Image: see text] Stannous-based perovskite oxide materials are regarded as an important class of transparent conductive oxides for various fields of application. Enhancing the properties of such materials and facilitating the synthesis process are considered major challenging aspects for proper device applications. In the present paper, a comprehensive and detailed study of the properties of spray-coated CaSnO(3) thin films onto the Si(100) substrate is reported. In addition, the substrate effect and the incorporation of rare-earth Nd(3+) on engineering the characteristics of CaSnO(3) thin films annealed at 800 °C are included. X-ray diffraction (XRD) analysis results revealed the orthorhombic structure of all the samples with an expansion of lattice spacing as the substitution of Nd at the Ca site increased. The Raman and FT-IR analysis further confirmed the structural results collected via the XRD analysis. Surface scanning using field-emission scanning electron microscopy revealed the formation of quasi-orthorhombic CaSnO(3) grains with an increase in size as dopant content increased. Energy-dispersive X-ray analysis allowed quantification of the elements, while atomic mapping permitted visualizing their distribution along the surfaces. UV–visible spectroscopy and first-principles calculations using density functional theory (DFT) were conducted, and a thorough investigation of the optical and electronic properties of the pure material upon Nd(3+) insertion was provided. Electrical properties collected at room temperature revealed a growing conductivity upon doping ratio increase with a simultaneous enhancement in the carrier concentrations and mobility. The findings of the present work will help facilitate the synthesis procedure of large-area stannous-based perovskite oxide thin films through simple and efficient chemical solution methods for optoelectronic device applications. American Chemical Society 2021-11-23 /pmc/articles/PMC8655781/ /pubmed/34901603 http://dx.doi.org/10.1021/acsomega.1c04054 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Shaili, Hamza
Salmani, Elmehdi
Beraich, Mustapha
Zidane, Mustapha
Taibi, M’hamed
Rouchdi, Mustapha
Ez-Zahraouy, Hamid
Hassanain, Najem
Mzerd, Ahmed
Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title_full Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title_fullStr Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title_full_unstemmed Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title_short Higher Conductivity and Enhanced Optoelectronic Properties of Chemically Grown Nd-Doped CaSnO(3) Perovskite Oxide Thin Films
title_sort higher conductivity and enhanced optoelectronic properties of chemically grown nd-doped casno(3) perovskite oxide thin films
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8655781/
https://www.ncbi.nlm.nih.gov/pubmed/34901603
http://dx.doi.org/10.1021/acsomega.1c04054
work_keys_str_mv AT shailihamza higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT salmanielmehdi higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT beraichmustapha higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT zidanemustapha higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT taibimhamed higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT rouchdimustapha higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT ezzahraouyhamid higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT hassanainnajem higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms
AT mzerdahmed higherconductivityandenhancedoptoelectronicpropertiesofchemicallygrownnddopedcasno3perovskiteoxidethinfilms