Cargando…

Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors

Organic perovskites are promising optoelectronic semiconductor materials with photoelectric applications. It is known that the luminescence of perovskites is highly sensitive to hydron molecules due to its low moisture resistance of crystal structure, indicating its potential application on humidity...

Descripción completa

Detalles Bibliográficos
Autores principales: Peng, Meiting, Zhang, Fan, Tian, Liyong, You, Longbin, Wu, Jiayi, Wen, Nanhua, Zhang, Yangfan, Wu, Yancheng, Gan, Feng, Yu, Hui, Zhao, Jing, Feng, Qi, Deng, Fuqin, Zheng, Longhui, Wu, Yingzhu, Yi, Ningbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606918/
https://www.ncbi.nlm.nih.gov/pubmed/36297932
http://dx.doi.org/10.3390/polym14204354
_version_ 1784818410029318144
author Peng, Meiting
Zhang, Fan
Tian, Liyong
You, Longbin
Wu, Jiayi
Wen, Nanhua
Zhang, Yangfan
Wu, Yancheng
Gan, Feng
Yu, Hui
Zhao, Jing
Feng, Qi
Deng, Fuqin
Zheng, Longhui
Wu, Yingzhu
Yi, Ningbo
author_facet Peng, Meiting
Zhang, Fan
Tian, Liyong
You, Longbin
Wu, Jiayi
Wen, Nanhua
Zhang, Yangfan
Wu, Yancheng
Gan, Feng
Yu, Hui
Zhao, Jing
Feng, Qi
Deng, Fuqin
Zheng, Longhui
Wu, Yingzhu
Yi, Ningbo
author_sort Peng, Meiting
collection PubMed
description Organic perovskites are promising optoelectronic semiconductor materials with photoelectric applications. It is known that the luminescence of perovskites is highly sensitive to hydron molecules due to its low moisture resistance of crystal structure, indicating its potential application on humidity-sensing. Herein, a novel perovskite-based compound (PBC) with minimal defects was developed to promote the photoluminescence performance via optimization of the drying method and precursor constitutions. Perovskite materials with good structural integrity and enhanced fluorescence performance up to four times were obtained from supercritical drying. Moreover, the hydrophilic polymer matrix, polyethylene oxide (PEO), was added to obtain a composite of perovskite/PEO (PPC), introducing enhanced humidity sensitivity and solution processibility. These perovskite/PEO composites also exhibited long-term stability and manifold cycles of sensitivity to humidity owing to perovskite encapsulation by PEO. In addition, this precursor solution of perovskite-based composites could be fancily processed by multiple methods, including printing and handwriting, which demonstrates the potential and broaden the applications in architecture decoration, logos, trademarks, and double encryption of anti-fake combined with humidity.
format Online
Article
Text
id pubmed-9606918
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96069182022-10-28 Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors Peng, Meiting Zhang, Fan Tian, Liyong You, Longbin Wu, Jiayi Wen, Nanhua Zhang, Yangfan Wu, Yancheng Gan, Feng Yu, Hui Zhao, Jing Feng, Qi Deng, Fuqin Zheng, Longhui Wu, Yingzhu Yi, Ningbo Polymers (Basel) Communication Organic perovskites are promising optoelectronic semiconductor materials with photoelectric applications. It is known that the luminescence of perovskites is highly sensitive to hydron molecules due to its low moisture resistance of crystal structure, indicating its potential application on humidity-sensing. Herein, a novel perovskite-based compound (PBC) with minimal defects was developed to promote the photoluminescence performance via optimization of the drying method and precursor constitutions. Perovskite materials with good structural integrity and enhanced fluorescence performance up to four times were obtained from supercritical drying. Moreover, the hydrophilic polymer matrix, polyethylene oxide (PEO), was added to obtain a composite of perovskite/PEO (PPC), introducing enhanced humidity sensitivity and solution processibility. These perovskite/PEO composites also exhibited long-term stability and manifold cycles of sensitivity to humidity owing to perovskite encapsulation by PEO. In addition, this precursor solution of perovskite-based composites could be fancily processed by multiple methods, including printing and handwriting, which demonstrates the potential and broaden the applications in architecture decoration, logos, trademarks, and double encryption of anti-fake combined with humidity. MDPI 2022-10-16 /pmc/articles/PMC9606918/ /pubmed/36297932 http://dx.doi.org/10.3390/polym14204354 Text en © 2022 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 Communication
Peng, Meiting
Zhang, Fan
Tian, Liyong
You, Longbin
Wu, Jiayi
Wen, Nanhua
Zhang, Yangfan
Wu, Yancheng
Gan, Feng
Yu, Hui
Zhao, Jing
Feng, Qi
Deng, Fuqin
Zheng, Longhui
Wu, Yingzhu
Yi, Ningbo
Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title_full Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title_fullStr Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title_full_unstemmed Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title_short Modified Fabrication of Perovskite-Based Composites and Its Exploration in Printable Humidity Sensors
title_sort modified fabrication of perovskite-based composites and its exploration in printable humidity sensors
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606918/
https://www.ncbi.nlm.nih.gov/pubmed/36297932
http://dx.doi.org/10.3390/polym14204354
work_keys_str_mv AT pengmeiting modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT zhangfan modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT tianliyong modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT youlongbin modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT wujiayi modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT wennanhua modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT zhangyangfan modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT wuyancheng modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT ganfeng modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT yuhui modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT zhaojing modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT fengqi modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT dengfuqin modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT zhenglonghui modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT wuyingzhu modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors
AT yiningbo modifiedfabricationofperovskitebasedcompositesanditsexplorationinprintablehumiditysensors