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High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation

PbS films grown on quartz substrates by the chemical bath deposition method were annealed in an O(2) atmosphere to investigate the role of oxygen in the sensitization process at different annealing temperatures. The average grain size of the PbS films gradually increased as the annealing temperature...

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Autores principales: Lv, Quanjiang, Li, Rongfan, Fan, Liangchao, Huang, Zhi, Huan, Zhenyu, Yu, Mingyang, Li, Haohua, Liu, Guiwu, Qiao, Guanjun, Liu, Junlin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10611095/
https://www.ncbi.nlm.nih.gov/pubmed/37896507
http://dx.doi.org/10.3390/s23208413
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author Lv, Quanjiang
Li, Rongfan
Fan, Liangchao
Huang, Zhi
Huan, Zhenyu
Yu, Mingyang
Li, Haohua
Liu, Guiwu
Qiao, Guanjun
Liu, Junlin
author_facet Lv, Quanjiang
Li, Rongfan
Fan, Liangchao
Huang, Zhi
Huan, Zhenyu
Yu, Mingyang
Li, Haohua
Liu, Guiwu
Qiao, Guanjun
Liu, Junlin
author_sort Lv, Quanjiang
collection PubMed
description PbS films grown on quartz substrates by the chemical bath deposition method were annealed in an O(2) atmosphere to investigate the role of oxygen in the sensitization process at different annealing temperatures. The average grain size of the PbS films gradually increased as the annealing temperature increased from 400 °C to 700 °C. At an annealing temperature of 650 °C, the photoresponsivity and detectivity reached 1.67 A W(−1) and 1.22 × 10(10) cm Hz(1/2) W(−1), respectively. The role of oxides in the sensitization process was analyzed in combination with X-ray diffraction and scanning electron microscopy results, and a three-dimensional network model of the sensitization mechanism of PbS films was proposed. During the annealing process, O functioned as a p-type impurity, forming p(+)-type PbS layers with high hole concentrations on the surface and between the PbS grains. As annealing proceeds, the p(+)-type PbS layers at the grain boundaries interconnect to form a three-dimensional network structure of hole transport channels, while the unoxidized p-type PbS layers act as electron transport channels. Under bias, photogenerated electron–hole pairs were efficiently separated by the formed p(+)-p charge separation junction, thereby reducing electron–hole recombination and facilitating a higher infrared response.
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spelling pubmed-106110952023-10-28 High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation Lv, Quanjiang Li, Rongfan Fan, Liangchao Huang, Zhi Huan, Zhenyu Yu, Mingyang Li, Haohua Liu, Guiwu Qiao, Guanjun Liu, Junlin Sensors (Basel) Article PbS films grown on quartz substrates by the chemical bath deposition method were annealed in an O(2) atmosphere to investigate the role of oxygen in the sensitization process at different annealing temperatures. The average grain size of the PbS films gradually increased as the annealing temperature increased from 400 °C to 700 °C. At an annealing temperature of 650 °C, the photoresponsivity and detectivity reached 1.67 A W(−1) and 1.22 × 10(10) cm Hz(1/2) W(−1), respectively. The role of oxides in the sensitization process was analyzed in combination with X-ray diffraction and scanning electron microscopy results, and a three-dimensional network model of the sensitization mechanism of PbS films was proposed. During the annealing process, O functioned as a p-type impurity, forming p(+)-type PbS layers with high hole concentrations on the surface and between the PbS grains. As annealing proceeds, the p(+)-type PbS layers at the grain boundaries interconnect to form a three-dimensional network structure of hole transport channels, while the unoxidized p-type PbS layers act as electron transport channels. Under bias, photogenerated electron–hole pairs were efficiently separated by the formed p(+)-p charge separation junction, thereby reducing electron–hole recombination and facilitating a higher infrared response. MDPI 2023-10-12 /pmc/articles/PMC10611095/ /pubmed/37896507 http://dx.doi.org/10.3390/s23208413 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lv, Quanjiang
Li, Rongfan
Fan, Liangchao
Huang, Zhi
Huan, Zhenyu
Yu, Mingyang
Li, Haohua
Liu, Guiwu
Qiao, Guanjun
Liu, Junlin
High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title_full High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title_fullStr High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title_full_unstemmed High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title_short High Detectivity of PbS Films Deposited on Quartz Substrates: The Role of Enhanced Photogenerated Carrier Separation
title_sort high detectivity of pbs films deposited on quartz substrates: the role of enhanced photogenerated carrier separation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10611095/
https://www.ncbi.nlm.nih.gov/pubmed/37896507
http://dx.doi.org/10.3390/s23208413
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