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Chromium arylalkoxycarbene

Indenes, like cyclobutenones and furans, are common side-products in the reaction of chromium arylalkoxycarbene complexes with alkynes, especially internal alkynes [9]. The in-dene structure comes about by a process that is very similar to naphthol formation annula-tion to the aryl ring still occurs, but without carbon monoxide insertion, and, instead, bond formation takes place directly between an alkyne carbon and the aryl carbon ortho to the metal carbene substituent [Eq. (18)] [4]. Scheme 5-1 shows two pathways that have been suggested for this transformation beginning from the vinylcarbene intermediate 3, naphthol formation can be diverted to intermediate 8, either by direct cyclization (3 -+ 8) or through the chromacyclohexadiene (3->6- 8). Aromatization and decomplexation yield the indene [7 b, d, 43], More detailed mechanistic analyses consider the roles of the stereochemistry of 3, as an ( )- or (Z)-vinylcarbene, as well as the coordination of external ligands, in the production of indenes, naphthols, furans, cyclobutenones, and other common side-products [8 a, 9, 13, 44],... [Pg.147]

Certain alkyne and carbene substitution patterns divert the reaction toward predominant indene formation. For example, ynamines and ynediamines both react with chromium arylalkoxycarbenes to give isolable vinyl carbenes, which proceed on to indenes thermally [21 a, b]. Chromium aryla/nmocarbenes also lead to good to excellent yields of indanones after hydrolysis of the enamine [Eq. (19)] [45]. In this latter case, the increased electron-donating... [Pg.147]


See other pages where Chromium arylalkoxycarbene is mentioned: [Pg.140]    [Pg.140]   
See also in sourсe #XX -- [ Pg.140 ]




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