Spectroscopy and Spectral Analysis, Volume. 41, Issue 1, 71(2021)
Study on the Structure/Energy-Level of Palladuim-Porphyrin Sensitizers on the Triplet-Triplet-Annihilation Upconversion Performance
Fig. 6. Optical characterization of PdOEP in
(a): Absorption spectrum; (b): Fluorescence spectrum; (c): The phosphorescence spectrum in N2 atmosphere; (excitation wavelength: 532 nm); (d): The phosphorescence decay curves associated with dual exponential fitting for PdOEP at room temperature in N2 atmosphere (Emission wavelength 665 nm)
Fig. 7. Optical characterization of PdBrTPP in
(a): Absorption spectrum; (b): Fluorescence spectrum; (c): The phosphorescence spectrum in N2 atmosphere; (excitation wavelength: 532 nm); (d): The phosphorescence decay curves associated with dual exponential fitting for PdBrTPP at room temperature in N2 atmosphere (Emission wavelength 694 nm)
Fig. 8. Absorption and fluorescence spectra of
Fig. 9. Jablonski diagram of the TTA-UC process between the sensitizers (PdOEP, PdBrTPP) and the emitter (
Fig. 10. Concentration-dependent upconversion spectra of emitter (
Fig. 11. The power-dependent upconversion spectra
(a): PdOEP/
Fig. 12. Under excitation of 532 nm laser (400 mW·cm-2), the concentration-dependent spectra and UC efficiency curves of emitter doped with different sensitizers. (a, b) PdOEP (10 μmol·L-1); (c, d) PdBrTPP(4 μmol·L-1), the fluorescence of Rh6G was set as the reference for the calculation of UC efficiency. The original data was shrank six times to fit the chart
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Chang-qing YE, Xue YU, Shuo-ran CHEN, Zuo-qin LIANG, Yu-yang ZHOU, Xiao-mei WANG. Study on the Structure/Energy-Level of Palladuim-Porphyrin Sensitizers on the Triplet-Triplet-Annihilation Upconversion Performance[J]. Spectroscopy and Spectral Analysis, 2021, 41(1): 71
Category: Research Articles
Received: May. 23, 2020
Accepted: --
Published Online: Apr. 8, 2021
The Author Email: Chang-qing YE (yechangqing@mail.usts.edu.cn)