A study of intramolecular electronic energy transfer (intra-EET) in a series of bichromophoric molecules, composed of cyclic a-diketones incorporating a para-substituted benzene ring, is reported. The results show that the transfer efbciency is strongly dependent on structure, suggesting that exchan
Orientational effects in intramolecular electronic energy transfer in bichromophoric molecules II: Triplet-triplet transfer
โ Scribed by Sharona-Tal Levy; Mordecai B. Rubin; Shammai Speiser
- Book ID
- 103994152
- Publisher
- Elsevier Science
- Year
- 1993
- Tongue
- English
- Weight
- 638 KB
- Volume
- 69
- Category
- Article
- ISSN
- 1010-6030
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โฆ Synopsis
Intramolecular
triplet energy transfer has been investigated in a series of bichromophoric molecules incorporating a cyclic rY-diketone and substituted aromatic ring. The distance as well as the relative orientation between the two chromophores varies as a function of the number of methylene groups in the chains joining them. Previous work with these compounds has shown that intramolecular singlet energy transfer between the aromatic and diketone moieties shows a distance dependence which fits with the exchange mechanism. Phosphorescence of the diketone moiety (including temperature dependence) was used to evaluate the efficiency of triplet energy transfer. Direct excitation of the diketone resulted in weak phosphorescence, indicating that intersystem crossing is inefficient. Wowever, excitation of the aromatic moiety resulted in much more intense phosphorescence as a result of the formation of triplet diketone via triplet energy transfer. Complementariness between singlet and triplet energy transfer was evidenced by the fact that some compounds in which singlet energy transfer was more efficient exhibited weaker phosphorescence and vice versa. Quantitative correlations between the triplet energy transfer efficiency and interchromophore distance were not possible.
๐ SIMILAR VOLUMES
Keceivcd 23 August 19S3 X theory is presented for intranlolecular electronic encgy transfer in bichromophoric molecules. Expressions are given for the donor moiety fluorescence (phosphorescence) decay and for Its fluorescence (phosphorescence) quantum yield in rerms of rhc areragc di&mce between the
The intramolecular electronic energy transfer between two chromopliorcs separated by a methylene chain has been observed in an isolated molecule. The molecules studied are 1 \_(o-tolyl)-3-@-tolyl)propane (I) and I-(m-tolyl)-3-@-tolylk propane (II). The energy transfer rate from o-or m-xylcnc moiety