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Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection

We report the deposition and characterization of calcium lead titanate (PCT) thin films for pyroelectric detectors. PCT films of thicknesses ranging from ~250 to 400 nm were deposited on both silicon and Si/SiN/Ti/Au substrates at 13 mTorr pressure by 200W radio frequency sputtering in an Ar + O(2)...

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Autores principales: Mafi, Elham, Calvano, Nicholas, Patel, Jessica, Islam, Md. Sherajul, Hasan Khan, Md. Sakib, Rana, Mukti
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759807/
https://www.ncbi.nlm.nih.gov/pubmed/33271897
http://dx.doi.org/10.3390/mi11121073
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author Mafi, Elham
Calvano, Nicholas
Patel, Jessica
Islam, Md. Sherajul
Hasan Khan, Md. Sakib
Rana, Mukti
author_facet Mafi, Elham
Calvano, Nicholas
Patel, Jessica
Islam, Md. Sherajul
Hasan Khan, Md. Sakib
Rana, Mukti
author_sort Mafi, Elham
collection PubMed
description We report the deposition and characterization of calcium lead titanate (PCT) thin films for pyroelectric detectors. PCT films of thicknesses ranging from ~250 to 400 nm were deposited on both silicon and Si/SiN/Ti/Au substrates at 13 mTorr pressure by 200W radio frequency sputtering in an Ar + O(2) environment. Substrates were kept at variable temperatures during the deposition. The PCT films were annealed at various temperatures in an O(2) environment for 15 min. X-ray diffraction results confirm the polycrystalline nature of these films. Energy dispersive spectroscopy function of scanning electron microscope showed that the films are stoichiometric (Ca(0.43)Pb(0.57)) TiO(3) (Ca/Ti = 0.5, Pb/Ti = 0.66). Temperature dependence of capacitance, pyroelectric current, and pyroelectric coefficient was investigated for different PCT films. Our results show that films deposited at 550 °C and 600 °C demonstrate better quality and larger values of the pyroelectric coefficient. On the other hand, the capacitance fabricated on the PCT films at 550 °C showed the highest value of pyroelectric current and pyroelectric coefficient which were 14 pA and at 30 °C was ~2 µC/m(2)K respectively at a higher temperature. In addition, we used density functional theory to determine the atomic and band structure, real and imaginary parts of dielectric constant and refractive index, and absorption and reflection constants with energy.
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spelling pubmed-77598072020-12-26 Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection Mafi, Elham Calvano, Nicholas Patel, Jessica Islam, Md. Sherajul Hasan Khan, Md. Sakib Rana, Mukti Micromachines (Basel) Article We report the deposition and characterization of calcium lead titanate (PCT) thin films for pyroelectric detectors. PCT films of thicknesses ranging from ~250 to 400 nm were deposited on both silicon and Si/SiN/Ti/Au substrates at 13 mTorr pressure by 200W radio frequency sputtering in an Ar + O(2) environment. Substrates were kept at variable temperatures during the deposition. The PCT films were annealed at various temperatures in an O(2) environment for 15 min. X-ray diffraction results confirm the polycrystalline nature of these films. Energy dispersive spectroscopy function of scanning electron microscope showed that the films are stoichiometric (Ca(0.43)Pb(0.57)) TiO(3) (Ca/Ti = 0.5, Pb/Ti = 0.66). Temperature dependence of capacitance, pyroelectric current, and pyroelectric coefficient was investigated for different PCT films. Our results show that films deposited at 550 °C and 600 °C demonstrate better quality and larger values of the pyroelectric coefficient. On the other hand, the capacitance fabricated on the PCT films at 550 °C showed the highest value of pyroelectric current and pyroelectric coefficient which were 14 pA and at 30 °C was ~2 µC/m(2)K respectively at a higher temperature. In addition, we used density functional theory to determine the atomic and band structure, real and imaginary parts of dielectric constant and refractive index, and absorption and reflection constants with energy. MDPI 2020-12-01 /pmc/articles/PMC7759807/ /pubmed/33271897 http://dx.doi.org/10.3390/mi11121073 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mafi, Elham
Calvano, Nicholas
Patel, Jessica
Islam, Md. Sherajul
Hasan Khan, Md. Sakib
Rana, Mukti
Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title_full Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title_fullStr Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title_full_unstemmed Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title_short Electro-Optical Properties of Sputtered Calcium Lead Titanate Thin Films for Pyroelectric Detection
title_sort electro-optical properties of sputtered calcium lead titanate thin films for pyroelectric detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7759807/
https://www.ncbi.nlm.nih.gov/pubmed/33271897
http://dx.doi.org/10.3390/mi11121073
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