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Alkynes and small rings

Ni- and Pt-Cycles as intermediates in reactions of Ni(0)- and Pt(0)-complexes with benzyne or related small-ring alkynes 97CB1029. [Pg.276]

Several of the synthetic methods appropriate to these compounds have already been described as applicable to small rings (cyclization by metalloid hydride addition to alkenes and alkynes, and coupling through metal halide elimination). While much of the chemistry of these compounds is similar to that of acyclic derivatives, a few peculiarities are worthy... [Pg.626]

The formation of trans-products is observed to a lesser extent in the reaction of 3-alkoxycarbonyl-substituted cyclohexenones, in the reaction with electron-deficient alkenes and in the reaction with olefinic reaction partners, such as alkynes and allenes, in which the four-membered ring is highly strained (Scheme 6.11). The ester 26 reacted with cyclopentene upon irradiation in toluene to only two diastereomeric products 27 [36]. The exo-product 27a (cis-anti-cis) prevailed over the endo-product 27b (cis-syn-cis) the formation of trans-products was not observed. The well-known [2 + 2]-photocycloaddition of cyclohexenone (24) to acrylonitrile was recently reinvestigated in connection with a comprehensive study [37]. The product distribution, with the two major products 28a and 28b being isolated in 90% purity, nicely illustrates the preferential formation of HH (head-to-head) cyclobutanes with electron-acceptor substituted olefins. The low simple diastereoselectivity can be interpreted by the fact that the cyano group is relatively small and does not exhibit a significant preference for being positioned in an exo-fashion. [Pg.178]

The utilization of ring strain is an effective strategy for transition metal-catalyzed C—C bond cleavage. A variety of late transition metal complexes have been found to cleave the C—C bond of biphenylene to give insertion complexes and relieve ring-strain [84]. These metal complexes participate in various insertion reactions with small unsaturated molecules, such as CO, olefins, and alkynes, to give functionalized products (Scheme 11.5) [82]. [Pg.354]

Olefin metathesis is a reaction that is over fifty years old and has been developed over this time period from a process nm at high temperatures with ill-defined catalysts by unknown mechanisms to a process that can be conducted imder nuld conditions with designed catalysts by mechanisms that occur by established steps. Olefin metathesis, and the related alk3me metathesis, fully cleaves carbon-carbon double and triple bonds and reforms these bonds to generate new alkenes and alkynes. The reaction is often under equilibrium control, but certain classes of reactions can be conducted in a selective fashion that is controlled by relative rates or thermod)mamic preferences. This reaction can open strained rings to form polymers or small dienes. It can close small rings and macrocycles by a reaction that is driven by the expulsion of ethylene that makes the reaction favored entropically or by running in an open system under non-equilibrium conditions. It can also be run as a "cross metathesis" to form imsymmetrical alkenes when the steric or electronic properties of the two alkenes properly match. [Pg.1042]


See other pages where Alkynes and small rings is mentioned: [Pg.414]    [Pg.414]    [Pg.339]    [Pg.53]    [Pg.496]    [Pg.53]    [Pg.85]    [Pg.53]    [Pg.530]    [Pg.476]    [Pg.852]    [Pg.86]    [Pg.304]    [Pg.530]    [Pg.852]    [Pg.827]    [Pg.4038]    [Pg.827]    [Pg.879]    [Pg.334]    [Pg.394]    [Pg.285]    [Pg.110]    [Pg.490]    [Pg.85]    [Pg.4037]    [Pg.1191]    [Pg.83]    [Pg.747]    [Pg.827]    [Pg.2]    [Pg.38]    [Pg.132]    [Pg.63]    [Pg.29]    [Pg.92]    [Pg.128]   
See also in sourсe #XX -- [ Pg.7 , Pg.36 ]




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And small rings

Small rings

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