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Silylcuprates structure

Dialkyl phosphites such as 49 (Scheme 9) have been reacted as nucleophiles with activated pyridines [69, 70]. The first examples of this chemistry involved either 77-alkyl-pyridinium salts in the presence of DDQ, or pyridine and terminal alkynes as activating agents in a one-step protocol. The reaction proceeds under mild conditions that include AI2O3 catalysis. Quinolines 1 and chloroformates afford the expected adducts 68. The latter structures can be easily oxidized with O3 to provide the substituted indoles 69 (Scheme 12a). Isoquinolinephosphonates obtained this way have been used in Wittig-Homer chemistry. The whole sequence offers ready access to alkyl substituted isoquinolines [71]. Analogously, sUyl substituents have been introduced into A-acylated pyridines by using silylcuprates [72]. [Pg.137]

Under these conditions the first two lithium silylcuprates were isolated and structurally characterized. The complexes were found to be extremely air-and moisture-sensitive. During crystal selection and mounting the flask and the flushing argon were cooled down to ca. -50°C. At a temperature slightly above -30°C both compounds decompose instantaneously. [Pg.167]


See other pages where Silylcuprates structure is mentioned: [Pg.81]    [Pg.81]    [Pg.81]    [Pg.81]    [Pg.163]    [Pg.168]    [Pg.116]   
See also in sourсe #XX -- [ Pg.800 ]

See also in sourсe #XX -- [ Pg.800 ]




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