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Cyclic compounds cyclopentanes, synthesis

Cycloisomerization represents another approach for the construction of cyclic compounds from acyclic substrates, with iridium complexes functioning as efficient catalysts. The reaction of enynes has been widely studied for example, Chatani et al. reported the transformation of 1,6-enynes into 1-vinylcyclopentenes using [lrCl(CO)3]n (Scheme 11.26) [39]. In contrast, when 1,6-enynes were submitted in the presence of [lrCl(cod)]2 and AcOH, cyclopentanes with two exo-olefin moieties were obtained (Scheme 11.27) [39]. Interestingly, however, when the Ir-DPPF complex was used, the geometry of olefinic moiety in the product was opposite (Scheme 11.28) [17]. The Ir-catalyzed cycloisomerization was efficiently utilized in a tandem reaction along with a Cu(l)-catalyzed three-component coupling, Diels-Alder reaction, and dehydrogenation for the synthesis of polycyclic pyrroles [40]. [Pg.289]

The anionic oxy-Cope rearrangement of Cope substrates with an endo-cyclic double bond is used as a method for the synthesis of cyclic ketones. For example, 2 is rearranged on treatment with potassium hydride in dimethoxyethane to give cyclopentane 3, which is further transformed to the bicyclic compounds 5 or 694 1. [Pg.316]

Practicable syntheses of four-, five, and six-membered carbocyclic rings have been achieved by reaction of a,to-di-Grignard reagents with silver(i) salts. Conversion of l,3-bis(chloromethyl)cyclopentane into norbornane was effected in 82% yield, but was the only bridged-ring synthesis reported. Stereospecific cyclic ketone formation using iron(O) compounds has been reviewed. ... [Pg.302]

The B-alkyl-9-BBN undergoes an interesting reverse reaction to afford the parent alkene when treated with benzaldehyde. Consequently, the reaction is uniquely employed for the synthesis of exocyclic olefins (Chart 24.3). The hy-droboration of cyclic olefins with an internal double bond, followed by homologation with carbon monoxide in the presence of lithium trimethoxyaluminum hydride afford B-(cycloalkylmethyl)-9-BBN. This intermediate on treatment with benzaldehyde leads to an exocyclic methylene compound (Chart 24.3) [16]. Since the synthesis proceeds from the cycloalkene, thus it provides a valuable alternative to the customary methylenation of carbonyl compounds by Wittig and related procedures. The method also provides a clean synthesis of deuterium-labeled compounds (Eq. 24.10) [16], without positional scrambling or loss of label. Consequently, methylmethylene-d -cyclopentane in 52% isolated yield is obtained. [Pg.345]


See other pages where Cyclic compounds cyclopentanes, synthesis is mentioned: [Pg.284]    [Pg.53]    [Pg.313]    [Pg.134]    [Pg.207]    [Pg.653]    [Pg.454]    [Pg.1391]    [Pg.142]    [Pg.100]    [Pg.100]    [Pg.106]    [Pg.513]   
See also in sourсe #XX -- [ Pg.215 , Pg.216 ]




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Cyclic compounds

Cyclic synthesis

Cyclopentane

Cyclopentane synthesis

Cyclopentanes

Cyclopentanes synthesis

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