4.6 Article

Energy Loss Mechanism of Upconversion Core/Shell Nanocrystals

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 123, 期 36, 页码 22674-22679

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpcc.9b07176

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资金

  1. Natural Science Foundation of Jiangsu Province of China [BK20160073]
  2. Fundamental Research Funds for the Central Universities [2242019K40061]

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Small-sized upconversion nanocrystals (<10 nm) show a quite low luminescence efficiency. Even if these nanocrystals are coated by a 2 nm thick inert shell, the core/shell nanocrystals still exhibit weak upconversion luminescence. The involved energy loss mechanism is under debate. Here, we have demonstrated that the major contribution to the low upconversion efficiency is ascribed to an overtone vibrational energy transfer from electronic transition of the Yb3+ excited state to overtone transitions of deactivating group vibrations by dipole-dipole coupling. The maximum coupling distance reaches similar to 11 nm. Moreover, we first find that an ultrathick inert shell (>11 nm) is not beneficial for upconversion luminescence due to a strong scattering effect. A novel lifetime model is proposed to precisely describe the decay times of the Yb3+ F-2(5/2) state and Er3+ S-4(3/2) state as a function of inert-shell thickness. Based on an insight into the luminescence loss, we design beta-Na91%YbF4:9%Er@NaGdF4 nanocrystals with a 11.2 nm inert shell to completely block surface quenching and achieve more efficient and stronger upconversion emission.

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