Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5398743 | Journal of Luminescence | 2015 | 7 Pages |
Abstract
The optical absorption and fluorescence properties of five rhodamine dyes in solid-state are measured and show large difference from that in their gas phase or liquid solvents. All solid-state rhodamine dyes strongly absorb all light in UV and visible region, but emit only red and NIR fluorescence (680-800 nm, >100 nm red-shifted from that in solution). Further more, the absorption maxima of a solid-state rhodamine show a large red-shifted band (~100 nm) and blue-shifted peak (~125 nm) compared to that in solutions, indicating a strong molecular exciton coupling between molecules. All solid-state rhodamines still show reasonably good fluorescence quantum yield (Φf). In particular, solid-state Rhodamine B butyl ester and sulfonyl Rhodamine B showed a much longer emission lifetime (Ïf) than that of the corresponding molecular rhodamine, i.e. 4.12 and 4.14 ns in solid state compared to 1.61 and 2.47 ns in solution. The chemical structure of a rhodamine molecule showed dramatic effect on Φf and Ïf values for solid state rhodamine. The larger substituent in the benzene moiety favors higher Φf and Ïf values of rhodamine solids. These effects can be elucidated by the relation between structure-molecular distance and molecular exciton couplings.
Related Topics
Physical Sciences and Engineering
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Authors
Xian-Fu Zhang, Ya-Kui Zhang,