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A Generalized Approach to Photon Avalanche Upconversion in Luminescent Nanocrystals.

Artiom SkripkaMinji LeeXiao QiJia-Ahn PanHaoran YangChanghwan LeeP James SchuckBruce E CohenDaniel JaqueEmory M Chan
Published in: Nano letters (2023)
Photon avalanching nanoparticles (ANPs) exhibit extremely nonlinear upconverted emission valuable for subdiffraction imaging, nanoscale sensing, and optical computing. Avalanching has been demonstrated with Tm 3+ -, Pr 3+ -, or Nd 3+ -doped nanocrystals, but their emission is limited to a few wavelengths and materials. Here, we utilize Gd 3+ -assisted energy migration to tune the emission wavelengths of Tm 3+ -sensitized ANPs and generate highly nonlinear emission from Eu 3+ , Tb 3+ , Ho 3+ , and Er 3+ ions. The upconversion intensities of these spectrally discrete ANPs scale with nonlinearity factor s = 10-17 under 1064 nm excitation at power densities as low as 7 kW cm -2 . This strategy for imprinting avalanche behavior on remote emitters can be extended to fluorophores adjacent to ANPs, as we demonstrate with CdS/CdSe/CdS core/shell/shell quantum dots. ANPs with rationally designed energy transfer networks provide the means to transform conventional linear emitters into a highly nonlinear ones, expanding the use of photon avalanching in biological, chemical, and photonic applications.
Keyphrases
  • quantum dots
  • energy transfer
  • sensitive detection
  • high resolution
  • living cells
  • solid state
  • photodynamic therapy
  • monte carlo
  • single molecule
  • pi k akt