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Absorption and emission spectra of pristine FLA-Cn solids The fluorescence colors of pristine FLA-Cn solids are gradually blue-shifted with the increase of alkyl length, and FLA-C3 and FLA-C12 exhibit yellow (558 nm) and green (515 nm) emission, respectively (Fig. 2a, Table 1). On considering that the only difference between these molecules is the alkyl length, it is concluded that the alkyl chain can affect the solid-stateaggregation behavior of FLA-Cn. It should be noticed that there have been a variety of reports on the effect of length of alkyl chains on the solid-state aggregation and fluorescence properties of organic fluorophores,10i,13,15b,16 however, the reports on the effect of length of alkyl chains on the PFC behaviour are scarce. The chain length-dependent fluorescence properties are believed to be relative to both crystal packing modes (J- or Haggregation) and the distortion degree of the conjugated backbone. To understand the different ¬éuorescence emissions of homologous and isomeric ¬éuorophores in crystalline states, an effective and accurate way is to prepare and analyze the single crystal structures. Unfortunately, good-quality single crystals of FLA-Cn could not be obtained probably due to the existence of four side alkyl chains in the twisted backbone, which is unfavorable for the highly ordered alignment of molecules and the formation of high-quality single crystals. Recently, Chi et al. have reported that, in the crystalline state, 9,10-bis(p-alkoxystyryl) anthracenes (9,10-DSA) with long alkyl chains (decyl, undecyl and dodecyl) have more twisted conjugated backbones and weaker intermolecular interactions than those with short alkyl chains (heptyl, octyl and nonyl),10i which is believed to be the reason why long alkyl-containing 9,10-DSA derivatives emit shorter PL wavelengths and exhibit larger PFC spectral shifts ¦¤¦ËPFC |
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yhc0316: ½ð±Ò+70, ·ÒëEPI+1 2014-10-20 13:55:34
yhc0316: ½ð±Ò+70, ·ÒëEPI+1 2014-10-20 13:55:34
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