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1. 复旦大学物理系, 三束改性国家重点实验室, 上海200433
2. 中山大学超快速激光光谱学国家重点实验室, 广东广州510275
收稿日期:1999-03-13,
修回日期:1999-06-29,
纸质出版日期:2000-02-29
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王文军, 徐建华, 刘秀, 姜永强, 王恭明, 陆兴泽, 蔡志岗, 杨佩青, 周建英. LB膜中聚集体的类型及其荧光特性研究[J]. 发光学报, 2000,21(1): 48-52
WANG Wen-jun, XU Jian-hua, LIU Xiu, JIANG Yong-qiang, WANG Gong-ming, LU Xing-ze, CAI Zhi-gang, YANG Pei-qing, ZHOU Jian-ying,. Types and Fluorescence Characteristics of Aggregates in Langmuir-blodgett Multilayers[J]. Chinese Journal of Luminescence, 2000,21(1): 48-52
王文军, 徐建华, 刘秀, 姜永强, 王恭明, 陆兴泽, 蔡志岗, 杨佩青, 周建英. LB膜中聚集体的类型及其荧光特性研究[J]. 发光学报, 2000,21(1): 48-52 DOI:
WANG Wen-jun, XU Jian-hua, LIU Xiu, JIANG Yong-qiang, WANG Gong-ming, LU Xing-ze, CAI Zhi-gang, YANG Pei-qing, ZHOU Jian-ying,. Types and Fluorescence Characteristics of Aggregates in Langmuir-blodgett Multilayers[J]. Chinese Journal of Luminescence, 2000,21(1): 48-52 DOI:
采用稳态和时间分辨荧光研究了不同类型的LB多层膜中分子聚集特性。在半花菁/花生酸交替膜中
花生酸层的隔离使得半花菁分子之间的相互作用主要发生在同一层中
形成H聚集体
荧光光谱蓝移;在纯半花菁Y型和Z型膜中
较强的层间相互作用使分子形成J聚集体
导致荧光光谱发生显著红移。
Aggregation features of molecules in various types of Langmuir-Blodgett (LB) multilayers were investigated by using the steady-state and time-resolved fluorescence techniques. The fluorescence peak of interleaving hemicyanine/arachidic acid multilayers is at 598nm which shows a significant blue shift with respect to that of hemicyanine(615nm) in solution. As the interlayer interactions were screened by arachidic acid layers
intralayer interaction of hemicyanine molecules caused the formation of H-aggregates in interleaving hemicyanine/arachidic acid multilayers. However
the fluorescence peaks of pure Y and Z-type hemicyanine multilayers are at 645nm and 635nm
respectively. It indicated that the molecules mainly formed J-aggregates which lead to a significant red shift of fluorescence band due to the stronger interlayer interactions. It indicated that the interlayer interaction would be stronger than the intralayer interaction because of the lack of the screening of AA and the inclination angle θ would be reduced (close to 0)
which caused J-type aggregation. The temporal profile could be well fitted by the model. The lifetime
relative amplitudes of the components and molecular numbers in an aggregate were deduced
Notice that the molecular numbers and amplitudes of the aggregates in the pure hemicyanine samples were larger than that in LB interleaving films.
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