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Coupling reactions of organoboranes

Palladium-catalyzed cross-coupling reaction of organoboranes with organic halides, triflates, etc. in the presence of a base (transmetalation is reluctant to occur without the activating effect of a base). For the catalytic cycle, see Kumada coupling on page 345. [Pg.581]

Suzuki A (2011) Cross-coupling reactions of organoboranes an easy way to construct C-C bonds (Nobel lecture). Angew Chem Int Ed 50 6722-6737... [Pg.25]

C. Chen, K. Wilcoxen, C.Q. Fluang, N. Strack, J.R. McCarthy, New methods for the synthesis of fluoro olefins via the palladium catalyzed cross-coupling reaction of 1-fluorovinyl halides with organoboranes and organostannanes, J. Fluor. Chem. 101 (2000) 285-290. [Pg.734]

Cross-coupling reactions between organoboranes and heteroaryl halides are effectively catalyzed by Pd(0) in the presence of a base. Couplings in simple pyrimidines are illustrated by the reaction between 2-chloropyrimidine and 2- or 3-thiophene- and selenophene-boronic acids which give the corresponding 2-substituted pyrimidines (921) (Scheme 72). In 2,4-dichloro- or 2,4-dibromo-pyrimidine it is the 4-halo substituent which is the more reactive. [Pg.287]

One of the primary alkyl groups in trialkylboranes participates in the coupling, and the reaction of organoboranes with secondary alkyl groups is very slow [139]. Thus, representative hydroboration reagents, such as 9-BBN, disiamylborane. [Pg.319]

Organoborane compounds, especially boronic acid derivatives, are less reactive and have also been utilized for the trans-selecdwe coupling reaction of l,l-dibromoalkenes.f t Use of UOH and Ba(OH)2 as the activator of boronic acids is important to carry out the selective coupling reaction (Scheme 5). [Pg.652]

Other approaches to trisubstituted aikenes via organoboranes involve alkynyltrialkyl borates, alkenyltrialkyl borates or the cross-coupling reaction of alkenylboronic acids with alkyl halides. Both ( )- and (2)-l,2-disubstituted alkenyl bromides can also be prepared by the methodology shown in eq 7. The boron trifiuoride etherate-mediated 1,4-addition of 1,2-disubstituted alkenylboronates affords y,5-unsaturated ketones (eq 9). The boronates can also be converted into chiral enoiborates for the enantioselective addition to aldehydes. ... [Pg.190]

Organoboranes are reactive compounds for cross-coupling[277]. The synthesis of humulene (83) by the intramolecular cross-coupling of allylic bromide with alkenylborane is an example[278]. The reaction of vinyiborane with vinyl-oxirane (425) affords the homoallylic alcohol 426 by 1,2-addition as main products and the allylic alcohol 427 by 1,4-addition as a minor product[279]. Two phenyl groups in sodium tetraphenylborate (428) are used for the coupling with allylic acetate[280] or allyl chloride[33,28l]. [Pg.347]

One of the newer and more fmitful developments in this area is asymmetric hydroboration giving chiral organoboranes, which can be transformed into chiral carbon compounds of high optical purity. Other new directions focus on catalytic hydroboration, asymmetric aHylboration, cross-coupling reactions, and appHcations in biomedical research. This article gives an account of the most important aspects of the hydroboration reaction and transformations of its products. For more detail, monographs and reviews are available (1—13). [Pg.308]

Moderate yields of acids and ketones can be obtained by paHadium-cataly2ed carbonylation of boronic acids and by carbonylation cross-coupling reactions (272,320,321). In an alternative procedure for the carbonylation reaction, potassium trialkylborohydride ia the presence of a catalytic amount of the free borane is utilized (322). FiaaHy, various tertiary alcohols including hindered and polycycHc stmctures become readily available by oxidation of the organoborane iatermediate produced after migration of three alkyl groups (312,313,323). [Pg.318]


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See also in sourсe #XX -- [ Pg.1003 ]




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