Photoluminescence and photostability of YVO4: Eu3+ nanoparticle/layered double hydroxide multilayer films prepared via layer-by-layer assembly

Wataru Onishi, Satoru Takeshita, Yoshiki Iso, Tetsuhiko Isobe

Research output: Contribution to journalArticle

2 Citations (Scopus)

Abstract

Layered double hydroxides (LDHs) consist of positively charged brucite-like layers with interlayer anions for charge compensation. Delaminated cationic LDH nanosheets can be used as building blocks to fabricate functional nanocomposites. In this study, we fabricated photoluminescent multilayer films containing positively charged LDH nanosheets and negatively charged YVO4:Eu3+ nanoparticles on quartz glass substrates through a layer-by-layer assembly technique. The absorbance and photoluminescence (PL) intensity of the YVO4:Eu3+ nanoparticles in the multilayer films were proportional to the number of deposition cycles. These linear relationships indicate that constant amounts of LDH nanosheets and YVO4:Eu3+ nanoparticles were alternately deposited on the substrate. The change in intensity of the 620 nm emission of the YVO4:Eu3+ nanoparticle powder and the multilayer film (LDH/YVO4:Eu3+)10 under continuous 270 nm excitation was measured to compare both photostabilities. The PL intensity of the YVO4:Eu3+ nanoparticle powder decreased to 7% of the initial intensity and then gradually recovered to 19%. In contrast, the PL intensity of the multilayer film (LDH/YVO4:Eu3+)10 decreased to 36% of the initial intensity and then recovered to 139%. The photo-degradation and recovery are discussed.

Original languageEnglish
Pages (from-to)71-77
Number of pages7
JournalJournal of Luminescence
Volume175
DOIs
Publication statusPublished - 2016 Jul 1

Fingerprint

Hydroxides
Multilayer films
Nanoparticles
hydroxides
Photoluminescence
assembly
photoluminescence
nanoparticles
Nanosheets
Powders
Magnesium Hydroxide
brucite
Nanocomposites
Quartz
Photodegradation
Substrates
Glass
Anions
hydroxide ion
interlayers

Keywords

  • Layered double hydroxides
  • Nanocomposites
  • Nanoparticles
  • Photoluminescence
  • YVO:Eu

ASJC Scopus subject areas

  • Atomic and Molecular Physics, and Optics
  • Condensed Matter Physics
  • Chemistry(all)
  • Biochemistry
  • Biophysics

Cite this

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title = "Photoluminescence and photostability of YVO4: Eu3+ nanoparticle/layered double hydroxide multilayer films prepared via layer-by-layer assembly",
abstract = "Layered double hydroxides (LDHs) consist of positively charged brucite-like layers with interlayer anions for charge compensation. Delaminated cationic LDH nanosheets can be used as building blocks to fabricate functional nanocomposites. In this study, we fabricated photoluminescent multilayer films containing positively charged LDH nanosheets and negatively charged YVO4:Eu3+ nanoparticles on quartz glass substrates through a layer-by-layer assembly technique. The absorbance and photoluminescence (PL) intensity of the YVO4:Eu3+ nanoparticles in the multilayer films were proportional to the number of deposition cycles. These linear relationships indicate that constant amounts of LDH nanosheets and YVO4:Eu3+ nanoparticles were alternately deposited on the substrate. The change in intensity of the 620 nm emission of the YVO4:Eu3+ nanoparticle powder and the multilayer film (LDH/YVO4:Eu3+)10 under continuous 270 nm excitation was measured to compare both photostabilities. The PL intensity of the YVO4:Eu3+ nanoparticle powder decreased to 7{\%} of the initial intensity and then gradually recovered to 19{\%}. In contrast, the PL intensity of the multilayer film (LDH/YVO4:Eu3+)10 decreased to 36{\%} of the initial intensity and then recovered to 139{\%}. The photo-degradation and recovery are discussed.",
keywords = "Layered double hydroxides, Nanocomposites, Nanoparticles, Photoluminescence, YVO:Eu",
author = "Wataru Onishi and Satoru Takeshita and Yoshiki Iso and Tetsuhiko Isobe",
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TY - JOUR

T1 - Photoluminescence and photostability of YVO4

T2 - Eu3+ nanoparticle/layered double hydroxide multilayer films prepared via layer-by-layer assembly

AU - Onishi, Wataru

AU - Takeshita, Satoru

AU - Iso, Yoshiki

AU - Isobe, Tetsuhiko

PY - 2016/7/1

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N2 - Layered double hydroxides (LDHs) consist of positively charged brucite-like layers with interlayer anions for charge compensation. Delaminated cationic LDH nanosheets can be used as building blocks to fabricate functional nanocomposites. In this study, we fabricated photoluminescent multilayer films containing positively charged LDH nanosheets and negatively charged YVO4:Eu3+ nanoparticles on quartz glass substrates through a layer-by-layer assembly technique. The absorbance and photoluminescence (PL) intensity of the YVO4:Eu3+ nanoparticles in the multilayer films were proportional to the number of deposition cycles. These linear relationships indicate that constant amounts of LDH nanosheets and YVO4:Eu3+ nanoparticles were alternately deposited on the substrate. The change in intensity of the 620 nm emission of the YVO4:Eu3+ nanoparticle powder and the multilayer film (LDH/YVO4:Eu3+)10 under continuous 270 nm excitation was measured to compare both photostabilities. The PL intensity of the YVO4:Eu3+ nanoparticle powder decreased to 7% of the initial intensity and then gradually recovered to 19%. In contrast, the PL intensity of the multilayer film (LDH/YVO4:Eu3+)10 decreased to 36% of the initial intensity and then recovered to 139%. The photo-degradation and recovery are discussed.

AB - Layered double hydroxides (LDHs) consist of positively charged brucite-like layers with interlayer anions for charge compensation. Delaminated cationic LDH nanosheets can be used as building blocks to fabricate functional nanocomposites. In this study, we fabricated photoluminescent multilayer films containing positively charged LDH nanosheets and negatively charged YVO4:Eu3+ nanoparticles on quartz glass substrates through a layer-by-layer assembly technique. The absorbance and photoluminescence (PL) intensity of the YVO4:Eu3+ nanoparticles in the multilayer films were proportional to the number of deposition cycles. These linear relationships indicate that constant amounts of LDH nanosheets and YVO4:Eu3+ nanoparticles were alternately deposited on the substrate. The change in intensity of the 620 nm emission of the YVO4:Eu3+ nanoparticle powder and the multilayer film (LDH/YVO4:Eu3+)10 under continuous 270 nm excitation was measured to compare both photostabilities. The PL intensity of the YVO4:Eu3+ nanoparticle powder decreased to 7% of the initial intensity and then gradually recovered to 19%. In contrast, the PL intensity of the multilayer film (LDH/YVO4:Eu3+)10 decreased to 36% of the initial intensity and then recovered to 139%. The photo-degradation and recovery are discussed.

KW - Layered double hydroxides

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