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Plasmon-Enhanced Blue Upconversion Luminescence by Indium Nanocrystals

  • Lingxiao Wang
  • , Shuangli Guo
  • , Dongmei Liu
  • , Jijun He
  • , Jie Zhou
  • , Kun Zhang
  • , Yang Wei
  • , Yue Pan
  • , Chao Gao
  • , Ze Yuan
  • , Dangyuan Lei
  • , Xiaoji Xie*
  • , Ling Huang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Numerous endeavors have been undertaken to gain enhanced upconversion luminescence via surface plasmon resonance (SPR) generated by specially designed nanostructures of noble metals (e.g., Au, Ag). However, the SPR response of these metals is usually weak in the ultraviolet (UV) region because of their intrinsic electronic configurations; thus, only green and red upconversion emissions can undergo significant plasmonic enhancement yet without selectivity, while an efficient approach to selectively enhancing the blue upconversion luminescence has been lacking. Herein, by integrating the pronounced UV SPR of silica-coated indium nanocrystals (InNCs) with blue-emission upconversion nanoparticles (UCNPs) of NaYbF4:Tm, an up to tenfold selective luminescence enhancement at 450 nm is obtained upon 980 nm laser excitation. Precise manipulation of the silica shell thickness suggests an optimal working distance of 3 nm between InNCs and UCNPs. This study has, for the first time, realized selective blue upconversion luminescence enhancement by using an inexpensive, non-noble metal material, which will not only enrich the fundamental investigations of SPR-enhanced upconversion emission, but also widen the applications of blue light-emitting nanomaterials, for example, in therapeutics.
Original languageEnglish
Article number1901242
JournalAdvanced Functional Materials
Volume29
Issue number29
Online published22 May 2019
DOIs
Publication statusPublished - 18 Jul 2019

Research Keywords

  • blue emission
  • indium nanocrystals
  • plasmonic enhancement
  • ultraviolet surface plasmon
  • upconversion luminescence

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