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Efficient fluorescence from perylene orange encapsulated in AlPO_4 mesoporous glass

Efficient fluorescence from perylene orange encapsulated in AlPO_4 mesoporous glass
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摘要 AlPO_4 mesoporous glass doped with perylene orange(PO) is prepared using two steps.The effects of dipping time and PO concentration on the fluorescent properties and molecular formation are investigated through absorption spectra,excitation spectra,and emission spectra.A slight increase in the intensity of excitation bands formed at 499 and 468 nm is ascribed to PO J-dimers aggregates as the dipping time increased from 2 to 24 h at high PO concentration(4×10-3 mol/L).This is also the reason behind the concentration increase from 4×10-6 to 4×10-3 mol/L for the 16 h dipping.The excitation spectra,and the emission spectra of samples doped with PO show a slight red shift as the dipping time and the PO concentration increase.AlPO_4 mesoporous glass is suitable to host the PO at high concentration. AlPO_4 mesoporous glass doped with perylene orange(PO) is prepared using two steps.The effects of dipping time and PO concentration on the fluorescent properties and molecular formation are investigated through absorption spectra,excitation spectra,and emission spectra.A slight increase in the intensity of excitation bands formed at 499 and 468 nm is ascribed to PO J-dimers aggregates as the dipping time increased from 2 to 24 h at high PO concentration(4×10-3 mol/L).This is also the reason behind the concentration increase from 4×10-6 to 4×10-3 mol/L for the 16 h dipping.The excitation spectra,and the emission spectra of samples doped with PO show a slight red shift as the dipping time and the PO concentration increase.AlPO_4 mesoporous glass is suitable to host the PO at high concentration.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2010年第6期606-608,共3页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China(No.50802103) the Deutsche Academischer Austausch Dienst and Chinese Academy of Science(No.A-0713112).
关键词 Electron transitions Emission spectroscopy Excited states FLUORESCENCE GLASS Electron transitions Emission spectroscopy Excited states Fluorescence Glass
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