4.8 Article

A General Strategy for Biocompatible, High-Effective Upconversion Nanocapsules Based on Triplet-Triplet Annihilation

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 135, Issue 13, Pages 5029-5037

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja3104268

Keywords

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Funding

  1. National Science Foundation of China [21231004, 20825101, 91027004, 21001072]
  2. Shanghai Sci. Tech. Comm. [11XD1400200, 12JC1401300]
  3. Ministry of Education of China [IRT0911]
  4. 973 program [2009CB930402, 2011CB932503]
  5. SLADP [B108]

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A general strategy for constructing high-effective upconversion nanocapsules based on triplet-triplet annihilation (TTA) was developed by loading both sensitizer and annihilator into BSA-dextran stabilized oil droplets. This strategy can maintain high translational mobility of the chromophores, avoid luminescence quenching of chromophore by aggregation, and decrease the O-2-induced quenching of TTA-based upconversion emission. Pt(II)-tetraphenyl-tetrabenzoporphyrin (PtTPBP) and BODIPY dyes (BDP-G and BDP-Y with the maximal fluorescence emission at 528 and 546 nm, respectively) were chosen as sensitizer/annihilator couples to fabricate green and yellow upconversion luminescent emissive nanocapsules, named UCNC-G and UCNC-Y, respectively. In water under the atmospheric environment, interestingly, UCNC-G and UCNC-Y exhibit intense upconversion luminescence (UCL) emission (lambda(ex) = 635 nm) with the quantum efficiencies (Phi(UCL)) of 1.7% and 4.8%, respectively, whereas very weak UCL emission (Phi(UCL) < 0.1%) was observed for the corresponding previous reported SiO2-coating nanosystems because of aggregation-induced fluorescence quenching of annihilators. Furthermore, application of theses upconversion nanocapsules for high-contrast UCL bioimaging in vivo of living mice without removing the skin was demonstrated under 635-nm excitation with low power density of 12.5 mW cm(-2).

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