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Nanofiber Space-Confined Fabrication of High-Performance Perovskite Films for Flexible Conversion of Fluorescence Quantum Yields in LED Applications
Yi, Ningbo1,2,3; Guan, Xue1; Chen, Xiaoting1; Xie, Luojia1; Zhang, Nan2,4,5; Liao, Jinfeng5; Su, Long1,5; Wu, Yancheng1; Gan, Feng1; Chang, Guoqiang3; Tian, Liyong1; Zhang, Yangfan1
2024-09
Source PublicationPolymers
ISSN2073-4360
Volume16Issue:18Pages:2563
Abstract

Perovskite is an advanced optoelectronic semiconductor material that has garnered significant attention in recent years. However, its drawback lies in its environmental instability, limiting its practical applications. To tackle this issue, this research delved into the idea of creating a space-confined structure and used electrospinning to produce a film of perovskite nanocomposite fibers. By effectively encapsulating perovskite nanocrystals into a polymer matrix, the perovskite could be shielded from water and oxygen in the environment, thereby reducing the likelihood of perovskite decomposition and enhancing the stability of its structure and properties. This study examined the influence of material composition and the spinning process on the nanofiber structure to create good spatial confinement. This strategy resulted in a high photoluminescence quantum yield of over 80% and a long-term environmental stability of as long as 1000 h over 90% of the original PLQY. By harnessing the flexibility of the composite fibers, this study demonstrated the potential applications and performance of this nanocomposite film in flexible quantum fluorescence conversion for LED applications.

KeywordFlexibility Perovskite Spatial Confinement
DOI10.3390/polym16182563
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaPolymer Science
WOS SubjectPolymer Science
WOS IDWOS:001323506600001
PublisherMDPI, ST ALBAN-ANLAGE 66, CH-4052 BASEL, SWITZERLAND
Scopus ID2-s2.0-85205129325
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Citation statistics
Document TypeJournal article
CollectionINSTITUTE OF APPLIED PHYSICS AND MATERIALS ENGINEERING
Corresponding AuthorTian, Liyong; Zhang, Yangfan
Affiliation1.College of Textile Science and Engineering, Wuyi University, Jiangmen, 529020, China
2.Guangdong Provincial Key Laboratory of Semiconductor Optoelectronic Materials and Intelligent Photonic Systems, Harbin Institute of Technology, Shenzhen, 518055, China
3.Kai Rong De (Shao Guan) Fibre Glass Co., Ltd., Shaoguan, 512000, China
4.MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed 5 Matter, School of Physics, Xi′an Jiaotong University, Xi′an, 710049, China
5.Joint Key Laboratory of the Ministry of Education, Institute of Applied Physics and Materials Engineering, University of Macau, 999078, Macao
Recommended Citation
GB/T 7714
Yi, Ningbo,Guan, Xue,Chen, Xiaoting,et al. Nanofiber Space-Confined Fabrication of High-Performance Perovskite Films for Flexible Conversion of Fluorescence Quantum Yields in LED Applications[J]. Polymers, 2024, 16(18), 2563.
APA Yi, Ningbo., Guan, Xue., Chen, Xiaoting., Xie, Luojia., Zhang, Nan., Liao, Jinfeng., Su, Long., Wu, Yancheng., Gan, Feng., Chang, Guoqiang., Tian, Liyong., & Zhang, Yangfan (2024). Nanofiber Space-Confined Fabrication of High-Performance Perovskite Films for Flexible Conversion of Fluorescence Quantum Yields in LED Applications. Polymers, 16(18), 2563.
MLA Yi, Ningbo,et al."Nanofiber Space-Confined Fabrication of High-Performance Perovskite Films for Flexible Conversion of Fluorescence Quantum Yields in LED Applications".Polymers 16.18(2024):2563.
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