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Cyclooctatetraene valence-bond isomerization

The numerous transformations of cyclooctatetraene 189 and its derivatives include three types of structural changes, viz. ring inversion, bond shift and valence isomerizations (for reviews, see References 83-85). One of the major transformations is the interconversion of the cyclooctatetraene and bicyclo[4.2.0]octa-2,4,7-triene. However, the rearrangement of cyclooctatetraene into the semibullvalene system is little known. For example, the thermolysis of l,2,3,4-tetra(trifluoromethyl)cyclooctatetraene 221 in pentane solution at 170-180 °C for 6 days gave three isomers which were separated by preparative GLC. They were identified as l,2,7,8-tetrakis(trifluoromethyl)bicyclo[4.2.0]octa-2,4,7-triene 222 and tetrakis(trifluoromethyl)semibullvalenes 223 and 224 (equation 71)86. It was shown that a thermal equilibrium exists between the precursor 221 and its bond-shift isomer 225 which undergoes a rapid cyclization to form the triene 222. The cyclooctatetraenes 221 and 225 are in equilibrium with diene 223, followed by irreversible rearrangement to the most stable isomer 224 (equation 72)86. [Pg.773]

The valence isomerization of cyclooctatetraene to semibullvalene developed by H. E. Zimmerman may be rationalized in terms of an intramolecular cycloaddition. Direct formation of C-C bonds between C1-C5 and C4-C6 of a hexatriene unit seems to be the most probable reaction pathway. It should be noted that this photoreaction belongs to the rare examples of a gas phase photolysis useful for synthetic purposes. [Pg.205]


See other pages where Cyclooctatetraene valence-bond isomerization is mentioned: [Pg.15]    [Pg.343]    [Pg.160]    [Pg.1663]   
See also in sourсe #XX -- [ Pg.367 , Pg.368 ]




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Valence-bond isomerization

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