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5- Phenylthiazole, irradiation

Vernin et al. independently observed that during the irradiation in benzene of 2-iodothiazole to generate 2-thiazolyl radicals, the resulting 2-phenylthiazole (216) isomerized into a mixture of 4-phenylthiazole (214) and 3-phenylisothiazole (213) (Scheme 103) (489). Marking the 4- and... [Pg.137]

TABLE III-39. RELATIVE PERCENTAGE OF ISOMERS BY IRRADIATION OF PHENYLTHIAZOLES AND ISOTHIAZOLES (217)... [Pg.375]

Many data have been reported on the reactivity of 2-phenylthiazole (83). In a pioneering work, the irradiation of this compound led to 4-phenylthiazole (84)... [Pg.68]

However, such an explanation was not convincing for other authors. Maeda and Kojima found that the irradiation of 2-phenylthiazole in ethanol at 80°C led to the same products described before but in a different ratio. Under the same reaction conditions, 5-phenylthiazole gave 4-phenylisothiazole, while 4-phenyl-thiazole was converted into 3-phenylisothiazole. The most important observation those authors made was that deuterium incorporation occurred when the reaction was carried out in benzene at 80°C in the presence of deuterium oxide. In fact, 2-phenylthiazole furnished deuterated 3-phenyl-4-deuteroisothiazole and... [Pg.70]

Recently, the photochemical behavior of 4-phenylisothiazole has been reanalyzed (98JOC5592). This compound, on irradiation in ether, gave ring-opening products and 4-phenylthiazole (3% yield) (Scheme 40). The irradiation in methanol... [Pg.75]

Deuterium-labeling studies support the involvement of tricyclic sulfonium cations (152 and 153) in the photorearrangement of phenylthiazoles (154)13 3 the proposed general mechanism is shown in Scheme 12. Highly strained thiirans (155) have been similarly obtained on irradiation of the mesoionic 2-alkylthiothiazol-4-ones (156),134 and an analogous intermediate (157) has been proposed to account for the conversion of the mesoionic species (158)... [Pg.28]

Syntheses and reactions of lithiated isothiazoles and thiazoles were reviewed. [95H533] Phenylisothiazoles and phenylthiazoles are known to undergo a variety of phototranspositions upon irradiation in benzene solvent. These reactions were reinvestigated. [94JA2292]... [Pg.165]

In the dyad, because of the symmetry of the 3-phenylazetine ring in BC-53 (Scheme 29), insertion of sulfur between ring positions C-l and C-4 or CC-1 and C-2 leads to the same compound, 5-phenylthiazole (53). Similarly, insertion of a sulfur atom between N3 and C4 or N3 and C2 leads to 4-phenylisothiazole (55). Accordingly, because of this symmetry, only a dyad results. This symmetry is removed, however, in the case of 2-deuterio-5-phenylthiazole (53-2d). Thus, irradiation of 53-2d resulted in the formation of three isomeric products (Scheme 30), viz., 4-deuterio-5-phenylthiazole (53-4d), 5-deuterio-4-phenylisothiazole (55-5d), and 3-deuterio-4-phenylisothiazole (55-3d). D euterium 1 abelling h as t hus e xpanded t he d yad i nto a tetrad. These results are entirely consistent with the electrocyclic ring closure - heteroatom migration mechanism shown in Scheme 31 <94JA2292>. [Pg.50]

Irradiation of isothiazole gives thiazole in low yield. Irradiation of 3-, 4-, or 5-phenyl-substituted isothiazoles generates an equilibrium mixture of phenylthiazoles with the starting phenylisothiazole <2000JOC3626>. A mechanism for 2-phenylthiazole/3-phenylisothiazole/4-phenylthiazole photoisomerization is shown in Scheme 12 <2002T8037>. [Pg.485]

According to the observed photochemical products and the results of deuterium labeling studies, the six isomeric phenylisothiazoles and phenyl-thiazoles can be organized into a tetrad of four isomers that interconvert mainly via P5, Pg, and P, transposition pathways and a dyad in which 5-phenylthiazole 52 transposes via P5 and P7 pathways to 4-phenylisothiazole 48 (Scheme 8), the only isomer that did not yield a transposition product upon irradiation in benzene solution. With one minor exception, no interconversions between the tetrad and dyad were observed. In that case, in addition to transposing to members of the tetrad, 5-phenylisothiazole 49 also transposed to 5-phenylthiazole 52, the first member of the dyad, in less than 1 % yield. This conversion was assumed to occur via a P4 permutation process. [Pg.73]

DjO [37-40]. These workers reported that irradiation of 2-phenylthiazole 50, 4-phenylthiazole 51, or 5-phenylisothiazole 49 under these conditions resulted in the formation of 3-phenylisothiazole 47-4d with deuterium incorporation into ring position 4. In the case of 2-phenylthiazole 50, 4-phenylthiazole 51 was also formed but without deuterium incorporation. Finally, they reported that none of the reactants underwent photodeuteration prior to isomerization. [Pg.75]

Reinvestigation of these reactions, however, gave substantially different results. Thus Pavlik and coworkers observed that 3-phenylisothiazole 47 is formed with deuterium incorporation at C-4 upon irradiation of either 2-phenylthiazole 50 or 5-phenylisothiazole 49 but with approximately twice the extent of incorporation from the latter reactant. Furthermore, although Maeda... [Pg.75]

Thus upon prolonged irradiation the initially formed 2-deuterio-4-phenylthiazole 51-2d transposes to 5-deuterio-3-phenylisothiazole 47-5d without additional deuterium incorporation [36]. [Pg.77]

In a similar way, many simpler pyrazoles were converted into imidazoles," phenylisothiazoles partially converted into phenylthiazoles," and 3,5-diarylisoxazoles converted into 2,5-diaryloxazoles by irradiation." ... [Pg.400]

The luminescence of the Eu(III) complex Eu(THlA)2(HFA)3 (THIA 4,5-bis (5-methyl-2-phenylthiazole) is efficiently quenched when the photochromic ligand THIA is converted from the colorless ring-open form to the closed-ring form upon UV light irradiation, resulting in change of the emission intensity [126]. [Pg.221]

T. DeHgeorgiev, S. Kaloyanova, N. Lesev, R. Alajarin, J.J. Vaquero, J. Alvarez-BuiUa, An environmentally benign synthesis of 2-cyanomethyl-4-phenylthiazoles under focused microwave irradiation. Green Sust. Chem. 1 (2011) 170-175. [Pg.138]


See other pages where 5- Phenylthiazole, irradiation is mentioned: [Pg.69]    [Pg.75]    [Pg.401]    [Pg.49]    [Pg.50]    [Pg.658]    [Pg.76]    [Pg.69]    [Pg.75]    [Pg.492]    [Pg.71]    [Pg.77]    [Pg.70]    [Pg.76]    [Pg.235]   
See also in sourсe #XX -- [ Pg.68 , Pg.70 , Pg.79 ]

See also in sourсe #XX -- [ Pg.68 , Pg.70 , Pg.79 ]




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