Cargando…

Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting

Expanded polystyrene (EPS) is causing severe environmental problems due to its high consumption and non-biodegradability. Upcycling waste EPS into high value-added functional materials is highly advisable in terms of sustainability and environmental concerns. Meanwhile, it is imperative to develop n...

Descripción completa

Detalles Bibliográficos
Autores principales: Fan, Yunjie, Su, Huanyou, Li, Pengfei, Lin, Mingmin, Liu, Dan, Pei, Kemei, Cao, Xuebo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10061269/
https://www.ncbi.nlm.nih.gov/pubmed/37006355
http://dx.doi.org/10.1039/d3ra00509g
_version_ 1785017259795677184
author Fan, Yunjie
Su, Huanyou
Li, Pengfei
Lin, Mingmin
Liu, Dan
Pei, Kemei
Cao, Xuebo
author_facet Fan, Yunjie
Su, Huanyou
Li, Pengfei
Lin, Mingmin
Liu, Dan
Pei, Kemei
Cao, Xuebo
author_sort Fan, Yunjie
collection PubMed
description Expanded polystyrene (EPS) is causing severe environmental problems due to its high consumption and non-biodegradability. Upcycling waste EPS into high value-added functional materials is highly advisable in terms of sustainability and environmental concerns. Meanwhile, it is imperative to develop new anti-counterfeiting materials with high security against increasingly high-tech counterfeiting. Developing UV-excited dual-mode luminescent advanced anti-counterfeiting materials that can be excited by commonly used commercial UV light sources (such as 254 nm and 365 nm wavelengths) remains a challenge. Herein, UV-excited dual-mode multicolor luminescent electrospun fiber membranes were fabricated from waste EPS by co-doping with a Eu(3+) complex and a Tb(3+) complex via electrospinning. The SEM results prove that the lanthanide complexes are uniformly dispersed in the PS matrix. The luminescence analysis results suggest that all the as-prepared fiber membranes with the different mass ratios of the two complexes can exhibit the characteristic emission of Eu(3+) ions and Tb(3+) ions under UV light excitation. The corresponding fiber membrane samples can exhibit intense visible luminescence with different colors under UV lights. Moreover, each membrane sample can display different color luminescence irradiated with UV light at 254 nm and 365 nm, respectively, e.g. show excellent UV-excited dual-mode luminescent properties. This is owing to the different UV absorption properties of the two lanthanide complexes doped in the fiber membrane. Finally, the fiber membranes with different color luminescence from green light to red light were achieved by tuning the mass ratio of the two complexes in the PS matrix and changing UV irradiation wavelengths. The as-prepared fiber membranes with tunable multicolor luminescence are very promising for high-level anti-counterfeiting applications. This work is very meaningful not only to upcycle waste EPS to high value-added functional products but also to develop advanced anti-counterfeiting materials.
format Online
Article
Text
id pubmed-10061269
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-100612692023-03-31 Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting Fan, Yunjie Su, Huanyou Li, Pengfei Lin, Mingmin Liu, Dan Pei, Kemei Cao, Xuebo RSC Adv Chemistry Expanded polystyrene (EPS) is causing severe environmental problems due to its high consumption and non-biodegradability. Upcycling waste EPS into high value-added functional materials is highly advisable in terms of sustainability and environmental concerns. Meanwhile, it is imperative to develop new anti-counterfeiting materials with high security against increasingly high-tech counterfeiting. Developing UV-excited dual-mode luminescent advanced anti-counterfeiting materials that can be excited by commonly used commercial UV light sources (such as 254 nm and 365 nm wavelengths) remains a challenge. Herein, UV-excited dual-mode multicolor luminescent electrospun fiber membranes were fabricated from waste EPS by co-doping with a Eu(3+) complex and a Tb(3+) complex via electrospinning. The SEM results prove that the lanthanide complexes are uniformly dispersed in the PS matrix. The luminescence analysis results suggest that all the as-prepared fiber membranes with the different mass ratios of the two complexes can exhibit the characteristic emission of Eu(3+) ions and Tb(3+) ions under UV light excitation. The corresponding fiber membrane samples can exhibit intense visible luminescence with different colors under UV lights. Moreover, each membrane sample can display different color luminescence irradiated with UV light at 254 nm and 365 nm, respectively, e.g. show excellent UV-excited dual-mode luminescent properties. This is owing to the different UV absorption properties of the two lanthanide complexes doped in the fiber membrane. Finally, the fiber membranes with different color luminescence from green light to red light were achieved by tuning the mass ratio of the two complexes in the PS matrix and changing UV irradiation wavelengths. The as-prepared fiber membranes with tunable multicolor luminescence are very promising for high-level anti-counterfeiting applications. This work is very meaningful not only to upcycle waste EPS to high value-added functional products but also to develop advanced anti-counterfeiting materials. The Royal Society of Chemistry 2023-03-30 /pmc/articles/PMC10061269/ /pubmed/37006355 http://dx.doi.org/10.1039/d3ra00509g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Fan, Yunjie
Su, Huanyou
Li, Pengfei
Lin, Mingmin
Liu, Dan
Pei, Kemei
Cao, Xuebo
Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title_full Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title_fullStr Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title_full_unstemmed Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title_short Upcycling waste expanded polystyrene into UV-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
title_sort upcycling waste expanded polystyrene into uv-excited dual-mode multicolor luminescent electrospun fiber membranes for advanced anti-counterfeiting
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10061269/
https://www.ncbi.nlm.nih.gov/pubmed/37006355
http://dx.doi.org/10.1039/d3ra00509g
work_keys_str_mv AT fanyunjie upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT suhuanyou upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT lipengfei upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT linmingmin upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT liudan upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT peikemei upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting
AT caoxuebo upcyclingwasteexpandedpolystyreneintouvexciteddualmodemulticolorluminescentelectrospunfibermembranesforadvancedanticounterfeiting