• Chinese Optics Letters
  • Vol. 14, Issue 12, 121602 (2016)
P. Miluski*, M. Kochanowicz, J. Żmojda, and D. Dorosz
Author Affiliations
  • Bialystok University of Technology, Wiejska 45D Street, Bialystok 15-351, Poland
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    DOI: 10.3788/COL201614.121602 Cite this Article Set citation alerts
    P. Miluski, M. Kochanowicz, J. Żmojda, D. Dorosz. Emission properties and energy transfer in Perylene-Rhodamine 6  G co-doped polymeric fiber[J]. Chinese Optics Letters, 2016, 14(12): 121602 Copy Citation Text show less
    Normalized absorption/emission spectra of Per (donor) and Rh 6 G (acceptor)[37].
    Fig. 1. Normalized absorption/emission spectra of Per (donor) and Rh 6 G (acceptor)[37].
    Energy level system of co-doped Per-Rh 6 G system.
    Fig. 2. Energy level system of co-doped Per-Rh 6 G system.
    Photos of (a) Per-Rh 6 G co-doped preforms and (b) fiber fabricated from preform A under UV (365 nm) excitation.
    Fig. 3. Photos of (a) Per-Rh 6 G co-doped preforms and (b) fiber fabricated from preform A under UV (365 nm) excitation.
    Scheme of the measurement setup.
    Fig. 4. Scheme of the measurement setup.
    Luminescence spectra of co-doped fiber fabricated from (a) preform A (Per/Rh6 G ratio 2.8), and (b) preform B (Per/Rh6 G ratio 1.5) viewed during short-length analysis.
    Fig. 5. Luminescence spectra of co-doped fiber fabricated from (a) preform A (Per/Rh6 G ratio 2.8), and (b) preform B (Per/Rh6 G ratio 1.5) viewed during short-length analysis.
    Energy transfer (Per-Rh6 G) efficiency ratio versus the fiber length.
    Fig. 6. Energy transfer (Per-Rh6 G) efficiency ratio versus the fiber length.
    λmax shift of Per and Rh 6 G dye in fabricated fibers.
    Fig. 7. λmax shift of Per and Rh 6 G dye in fabricated fibers.
    Attenuation spectra of co-doped fabricated fibers A and B.
    Fig. 8. Attenuation spectra of co-doped fabricated fibers A and B.
    Normalized emission spectra of co-doped fiber fabricated from preform A.
    Fig. 9. Normalized emission spectra of co-doped fiber fabricated from preform A.
    Normalized emission spectra of co-doped fiber fabricated from preform B.
    Fig. 10. Normalized emission spectra of co-doped fiber fabricated from preform B.
    FWHM of luminescence spectrum and λmax shift versus fiber length.
    Fig. 11. FWHM of luminescence spectrum and λmax shift versus fiber length.
    P. Miluski, M. Kochanowicz, J. Żmojda, D. Dorosz. Emission properties and energy transfer in Perylene-Rhodamine 6  G co-doped polymeric fiber[J]. Chinese Optics Letters, 2016, 14(12): 121602
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