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Spiro-anthracene substituted

Figure 23. Absorption and solvent-dependent emission spectra of spiro-anthronyl substituted anthracene 98a. (Reprinted with permission from Ref. 33). Figure 23. Absorption and solvent-dependent emission spectra of spiro-anthronyl substituted anthracene 98a. (Reprinted with permission from Ref. 33).
TABLE 22 Exciplex Luminescence Data for Spiro-Anthronyl Substituted Anthracene 98a in Polar Solvents [112 ... [Pg.196]

The effects of substituents and solvent polarity on the luminescence properties also have been evaluated for of a series of bichromophoric anthronyl-substituted anthracenes 98 and 99. It can be concluded from the quantum yield data summarized in Table 20 for spiro-substituted compounds 98a e that, dependent on solvent polarity, two different modes of intramolecular interactions between the electronically excited anthracene chromophore and the ground state ketone typically are operative, and both types of interaction result in fluorescence quenching. In nonpolar solvents, fluorescence quenching apparently involves endothermic intramolecular... [Pg.192]

Numerous unsuccessful attempts to synthesize cyclopropanethione have been reported. Thermal or photochemical generation of the C3H4S species from different sources always leads to allene episulfide. Some representative experiments include (a) in vacuo pyrolysis of the sodium salt of 2,2,4,4-tetramethylthietanone tosylhydrazone (4) into the stable tetramethylallene episulfide (S), (b) pyrolytic extrusion of nitrogen from perfluorinated thiadiazoline 6, (c) in vacuo pyrolysis of spiro compound 8 into methylenethiirane (3), (d) the flash vacuum pyrolysis-microwave spectroscopic approach applied to spiro compounds 9 and 10, (e) pyrolysis of anthracene adduct 11 and tosylhydrazide salt 12, (f) thermolytic nitrogen extrusion from pyrazoline-4-thione 13, thermolysis of tetramethylallene episulfide (5) or pyrazoline 13 in dig-lyme solution, and photolytic nitrogen extrusion from pyrazoline 13, ° (g) thionation of methylenecyclopropanone 15, and (h) reaction of donor-acceptor substituted allenes 18 with elemental sulfur. ... [Pg.1661]

A large number of polycyclic heterocycles containing two or more six-membered rings that share two or more carbon atoms are known. For the majority of these systems, only one of the six-membered rings contains the heteroatoms and the other rings are fused carbocyclic rings such as cyclohexane, benzene, naphthalene, and in rare examples, anthracene. Systems in which more than one of the six-membered rings contain heteroatoms are also briefly discussed these include spiro-cyclic compounds and substituted naphthalenes. [Pg.1134]


See other pages where Spiro-anthracene substituted is mentioned: [Pg.218]    [Pg.135]    [Pg.517]    [Pg.193]    [Pg.197]    [Pg.83]    [Pg.252]    [Pg.2368]   
See also in sourсe #XX -- [ Pg.135 ]




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Anthracenes, 9-substituted

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