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Emission properties and energy transfer in Perylene-Rhodamine 6 G co-doped polymeric fiber

Emission properties and energy transfer in Perylene-Rhodamine 6 G co-doped polymeric fiber
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摘要 This Letter presents the fabrication and characterization of a perylene(Per) and Rhodamine 6 G(Rh 6 G)co-doped polymeric fiber. The spectroscopic properties(luminescence spectra, attenuation, energy transfer)of the co-doped polymethyl methacrylate(PMMA) fiber are presented. Two different concentrations of Rh 6 G(2.2 × 10^(-4) and 4.1 × 10^(-4)mol∕L) and a constant Per concentration(6.2 × 10^(-4)mol∕L) are used in the experiments. The luminescence spectrum changes versus the fiber length are discussed. Additionally, the ratio of the maximum fluorescence peaks of the used dyes is calculated versus the fiber length. The obtained results show the energy transfer from Per(donor) to Rh 6 G(acceptor). The proposed co-doped fiber can be used in applications in lighting and sensor technology. This Letter presents the fabrication and characterization of a perylene(Per) and Rhodamine 6 G(Rh 6 G)co-doped polymeric fiber. The spectroscopic properties(luminescence spectra, attenuation, energy transfer)of the co-doped polymethyl methacrylate(PMMA) fiber are presented. Two different concentrations of Rh 6 G(2.2 × 10^(-4) and 4.1 × 10^(-4)mol∕L) and a constant Per concentration(6.2 × 10^(-4)mol∕L) are used in the experiments. The luminescence spectrum changes versus the fiber length are discussed. Additionally, the ratio of the maximum fluorescence peaks of the used dyes is calculated versus the fiber length. The obtained results show the energy transfer from Per(donor) to Rh 6 G(acceptor). The proposed co-doped fiber can be used in applications in lighting and sensor technology.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2016年第12期94-98,共5页 中国光学快报(英文版)
基金 supported by Bialystok University of Technology(Project No.S/WE/4/2013)
关键词 polymeric polymethyl luminescence methacrylate Rhodamine versus donor fabrication spectroscopic lighting polymeric polymethyl luminescence methacrylate Rhodamine versus donor fabrication spectroscopic lighting
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