4.8 Article

Plasmonic Chiral Metasurface-Induced Upconverted Circularly Polarized Luminescence from Achiral Upconversion Nanoparticles

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 14, Issue 48, Pages 53981-53989

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c1326753981

Keywords

upconversion luminescence; chiral metasurface; plasmonic enhancement; circularly polarized luminescence; optical chirality

Funding

  1. National Natural Science Foundation of China [62075093, 62211530039]
  2. National Key R&D Program of China [2021YFB2802300]
  3. Guangdong Innovative and Entrepre- neurial Research Team Program [2017ZT07C071]
  4. Natural Science Foundation of Guangdong Province [2019A1515110864]
  5. Shenzhen Science and Technol- ogy Innovation Commission [JCYJ20180305180635082, JCYJ20170817111349280, GJHZ20180928155207206]
  6. Key Lab of Modern Optical Technologies of Education Ministry of China, Soochow University [KJS2132]

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Strong upconverted circularly polarized luminescence can be achieved from achiral core-shell upconversion nanoparticles (UCNPs) via plasmonic chiral metasurface-induced optical chirality transfer. In the UCNPs-on-metasurface composite, significant enhancement and circular polarization modulation of upconversion luminescence can be achieved, paving new pathways to potential applications in imaging, sensing, and anticounterfeiting fields.
Chirality induction, transfer, and manipulation have aroused great interest in achiral nanomaterials. Here, we demonstrate strong upconverted circularly polarized luminescence from achiral core-shell upconversion nanoparticles (UCNPs) via a plasmonic chiral metasurface-induced optical chirality transfer. The Yb3+-sensitized core-shell UCNPs with good dispersity exhibit intense upconversion luminescence of Tm3+ and Nd3+ through the energy transfer process. By spin-coating the core-shell UCNPs on this chiral metasurface, strong enhancement and circular polarization modulation of upconversion luminescence can be achieved due to resonant coupling between surface plasmons and upconversion nanoparticles. In the UCNPs-on-metasurface composite, a significant upconversion luminescence enhancement can be achieved with a maximum enhancement factor of 32.63 at 878 nm and an overall enhancement factor of 11.61. The luminescence dissymmetry factor of the induced upconverted circularly polarized luminescence can reach 0.95 at the emission wavelength of 895 nm. The UCNPs-on-metasurface composite yields efficient modulation for the emission intensity and polarization of UCNPs, paving new pathways to many potential applications in imaging, sensing, and anticounterfeiting fields.

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