Cargando…

Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode

The ability to control the upconversion (UC) luminescence patterns in space from lanthanide-doped UC luminescence materials is very important for many applications including three-dimensional color displays, optical waveguides and optical communication. In this work, the fascinating UC luminescence...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Qingyan, Lu, Zhu, Gao, Wei, Zhou, Wanting, Qi, Jianxia, Hao, Aihua, Dong, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064640/
https://www.ncbi.nlm.nih.gov/pubmed/35520563
http://dx.doi.org/10.1039/c9ra03182k
_version_ 1784699425229111296
author Han, Qingyan
Lu, Zhu
Gao, Wei
Zhou, Wanting
Qi, Jianxia
Hao, Aihua
Dong, Jun
author_facet Han, Qingyan
Lu, Zhu
Gao, Wei
Zhou, Wanting
Qi, Jianxia
Hao, Aihua
Dong, Jun
author_sort Han, Qingyan
collection PubMed
description The ability to control the upconversion (UC) luminescence patterns in space from lanthanide-doped UC luminescence materials is very important for many applications including three-dimensional color displays, optical waveguides and optical communication. In this work, the fascinating UC luminescence patterns could be adjusted from the blue or green flower-like emission pattern to the red flame-like irradiation pattern with a red luminescence enhancement from a single β-NaYF(4):Yb(3+)/(Tm(3+) or Er(3+)) microcrystal (MC) by varying the excitation position. The red-to-blue (R/B) and the red-to-green (R/G) emission intensity ratios from the single MC particle that the focal point position of excitation NIR laser is on the side lace are much stronger than that in the case of the focused laser beam on the center. We think that the physical mechanism from the changes in the luminescence pattern and the emission intensity ratio is explained by the optical waveguide effect based on the total reflection effect. These results provide a new strategy for facilitating fundamental investigations of the UC micro/nano-materials, which will lead to promising applications in three-dimensional color display, optical waveguides and optical communication.
format Online
Article
Text
id pubmed-9064640
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90646402022-05-04 Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode Han, Qingyan Lu, Zhu Gao, Wei Zhou, Wanting Qi, Jianxia Hao, Aihua Dong, Jun RSC Adv Chemistry The ability to control the upconversion (UC) luminescence patterns in space from lanthanide-doped UC luminescence materials is very important for many applications including three-dimensional color displays, optical waveguides and optical communication. In this work, the fascinating UC luminescence patterns could be adjusted from the blue or green flower-like emission pattern to the red flame-like irradiation pattern with a red luminescence enhancement from a single β-NaYF(4):Yb(3+)/(Tm(3+) or Er(3+)) microcrystal (MC) by varying the excitation position. The red-to-blue (R/B) and the red-to-green (R/G) emission intensity ratios from the single MC particle that the focal point position of excitation NIR laser is on the side lace are much stronger than that in the case of the focused laser beam on the center. We think that the physical mechanism from the changes in the luminescence pattern and the emission intensity ratio is explained by the optical waveguide effect based on the total reflection effect. These results provide a new strategy for facilitating fundamental investigations of the UC micro/nano-materials, which will lead to promising applications in three-dimensional color display, optical waveguides and optical communication. The Royal Society of Chemistry 2019-06-04 /pmc/articles/PMC9064640/ /pubmed/35520563 http://dx.doi.org/10.1039/c9ra03182k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Han, Qingyan
Lu, Zhu
Gao, Wei
Zhou, Wanting
Qi, Jianxia
Hao, Aihua
Dong, Jun
Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title_full Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title_fullStr Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title_full_unstemmed Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title_short Controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
title_sort controlling upconversion luminescence patterns in space with red emission enhancement from a single fluoride microcrystal by tuning the excitation mode
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064640/
https://www.ncbi.nlm.nih.gov/pubmed/35520563
http://dx.doi.org/10.1039/c9ra03182k
work_keys_str_mv AT hanqingyan controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT luzhu controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT gaowei controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT zhouwanting controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT qijianxia controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT haoaihua controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode
AT dongjun controllingupconversionluminescencepatternsinspacewithredemissionenhancementfromasinglefluoridemicrocrystalbytuningtheexcitationmode