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1. 中国科学院激发态物理开放研究实验室, 吉林长春130021
2. 中国科学院 长春光学精密机械与物理研究所,吉林 长春,中国,130033
收稿日期:2001-09-20,
修回日期:2001-10-25,
纸质出版日期:2002-03-20
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张立功, 蒋大鹏, 范翊, 李亚军, 申德振. 聚乙烯基咔唑与8-羟基喹啉铝混合体系的荧光衰减[J]. 发光学报, 2002,23(2): 162-164
ZHANG Li-gong, JIANG Da-peng, FAN Yi, LI Ya-jun, SHEN De-zhen. Fluorescent Decay of the Blending Film of Polyvinyl Carbazole and Tris(8-Hydroxyquinolinolato) Aluminum[J]. Chinese Journal of Luminescence, 2002,23(2): 162-164
张立功, 蒋大鹏, 范翊, 李亚军, 申德振. 聚乙烯基咔唑与8-羟基喹啉铝混合体系的荧光衰减[J]. 发光学报, 2002,23(2): 162-164 DOI:
ZHANG Li-gong, JIANG Da-peng, FAN Yi, LI Ya-jun, SHEN De-zhen. Fluorescent Decay of the Blending Film of Polyvinyl Carbazole and Tris(8-Hydroxyquinolinolato) Aluminum[J]. Chinese Journal of Luminescence, 2002,23(2): 162-164 DOI:
报道了8-羟基喹啉铝和聚乙烯基咔唑薄膜及其混合体系膜的荧光衰减特性。聚乙烯基咔唑/8-羟基喹啉铝重量比100:4的混合膜在波长540nm和460nm处的荧光衰减时间分别为6.47ns和8.5ns。重量比100:10混合膜在波长540nm和460nm处的荧光衰减时间分别为5.5ns和7.9ns。上述两波长对应8羟基喹啉铝和聚乙烯基咔唑分子荧光发射。混合体系的荧光寿命仅为8羟基喹啉铝分子荧光寿命的40%
同时也低于聚乙烯基咔唑14ns的荧光寿命。荧光寿命的减少反映出两种分子之间存在较强的相互作用或形成了分子复合体。
The intermolecular interaction and complex of various molecules can influence their optical and electrical properties
especially
efficiency of fluorescence and stability for fluorescent materials. Fluorescence decay experiment can demonstrate energy transfer among molecules and intermolecular interaction. In this paper
Fluorescence decay of the blending of polyvinyl carbazole (PVC) and tris(8-hydroxyquinolinolato) aluminum (Alq) with weight ratio 100:4 and 100:10 were investigated. The decay experiment is pumped by YAG locking-mode laser
whose excitation wavelength is 355nm
and detected by streak camera. Detection wavelength is chose 480nm and 540nm. According to the photoluminescence spectra of PVC and Alq film
these two wavelength correspond to the radiation emission of PVC and Alq respectively. Fiting the decay curve using a single exponential decay function
we get the fluorescent decay time. For the blending ratio 100:4
the decay time is 8.5ns at 460nm and 6.47ns at 540nm. For the blending ration 100:10
it is 7.9ns at 480nm and 5.5ns at 540nm. For Alq film and PVC one
their fluorescent decay time are 16.4ns and 14ns respectively. The blending of PVC and Alq show a evident reduction in fluorescent decay time compared with PVC and Alq. Thus in addition to the energy transfer between PVC and Alq molecules
there is a second channel to exchange energy
and the dynamics in this relaxation can be faster than that of radiation transition. This decay experiment implied that the interaction of PVC and Alq molecules formed a new complex of PVC and Alq
or configuration change of molecule.
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