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1. 中国科学院长春物理研究所
2. 天津理工大学
纸质出版日期:1991-5-30,
收稿日期:1990-6-18,
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陈连春, 唐树延, 徐叙瑢. 叶绿素A较高激发态的发光[J]. 发光学报, 1991,12(2): 173-180
Chen Lianchun, Tang Shuyan, Xu Xurong. FLUORESCENCE OF THE HIGHER EXCITED SINGLET STATE FOR CHLOROPHYLL A(CHLA)[J]. Chinese Journal of Luminescence, 1991,12(2): 173-180
采用激发样品表层和样品中心两种激发方式
在300K和77K温度下研究叶绿素A(Chla)的较高激发行为
观测到峰值位于493、520和580nm三条新的荧光发射带.分别测量它们的荧光激发光谱
证明这三条新的荧光带属于Chla的第二激发单线态向基态的不同振动能级的辐射跃迁发光.最后提出电子跃迁模型
同时进行了讨论.
The use of laser excitation in the study of the absorption of two photons for chla was reported by Terenin (1968) and Liu Yixian (1981). This paper reports the fluorescence spectra of the higher excited singlet state for chla solution in n-pentane excited by xenon lamp (430nm)
and the fluorescence excitation spectra.When centre emitting mode was applied to excited sample of chla solution (see Fig. la) the fluorescence of chla solution in the concentration range of 10
-4
-10
-3
M at 300K excited by 430nm shows emission bands at about 665nm and 720nm
and in the concentration range of 10
-7
-10
-5
M
it shows emission band at about 493nm. The intensity rate of 665nm to 493nm is about 100(see Fig.2).However
when surface emitting mode was applied to excited sample of chla (see Fig.1b)
the fluorescence of chla solution in the concentration range of 10
-7
-10
-5
M at 300K excited by 430nm shows emission bands at 520nm and 580nm
and it shows emission band at about 665nm only in the higher concentration range of 10
-5
-10
-3
M (see Fig.3). When sample was frozen to 77K excited by 430nm
its fluorescence shows emission bands at about 520nm
580nm
665nm and 720nm (see Fig.4).Absorption spectra and excitation spectra of chla were measured. Excitation spectrum of the fluorescence at 665nm coincides with absorption spectrum for chla. Two principal absorption peaks are at about 430nm and 660nm(see Fige.5e).The excitation spectrum of the fluorescence at 493nm shows peaks at 354nm and 430nm(see Fig.5a)
while excitation spectrum of the fluorescence at 520nm shows peak at 430nm (see Fig
5b) and excitation spectrum of the fluorescence at 580nm shows pea- ks at 430nm and 490nm (see Fig.5c). It can be seen from the experimental results that the reabsorption of chla solution was minimized due to the use of surface emitting mode. So that the fluorescence at 520nm and 580nm was measured from transition of the higher excited singlet state S
2
to the ground state S0. And weaker fluorescence at 493nm from transition S
2
-S
0
was measured by higher detection sensitivity. From the experimental results processes of electronic transition in chla can be shown by the schematic energy level diagram in Fig. 6.
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