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Nitrogen radicals, in pyrrolidine synthesis

In common with the general increasing interest in synthetic applications of free-radical cyclizations, this year has seen a high level of interest in the synthesis of nitrogen heterocycles by such processes. Padwa et al. have reported the synthesis of a range of N-benzenesulphonyl-pyrrolidines (220) and -piperidines... [Pg.504]

Nitrogen heterocycles continue to be valuable reagents and provide new synthetic approaches such as NITRONES FOR INTRAMOLECULAR -1,3 - DIPOLAR CYCLOADDITIONS HEXAHYDRO-1,3,3,6-TETRAMETHYL-2,l-BENZISOX AZOLINE. Substituting on a pyrrolidine can be accomplished by using NUCLEOPHILIC a - sec - AM IN O ALKYL ATION 2-(DI-PHENYLHYDROXYMETHYL)PYRROLIDINE. Arene oxides have considerable importance for cancer studies, and the example ARENE OXIDE SYNTHESIS PHENANTHRENE 9,10-OXIDE has been included. An aromatic reaction illustrates RADICAL ANION ARYLATION DIETHYL PHENYLPHOSPHONATE. [Pg.234]

Azides are highly valuable radical acceptors that form nitrogen-centered radicals after addition onto them, as in the case of the transformation of 31 into 32. This reaction opens new possibilities for making pyrrolidines. Murphy, for instance, disclosed the synthesis of ( )-horsfihne and ( )-coerulescine by tandem cyclization of iodoaryl alkenyl azides such as 29 [42]. By the same strategy and using precursor 33, formal syntheses of ( )-vindohne [43] and ( )-aspidospermidine [44] have been rendered possible (Scheme 10). [Pg.8]

The synthesis of nicotine has shown that the group substituted in the j3-position is pyrrolidine ring (559) in which the hydrogen atom joined to the nitrogen atom has been replaced by a methyl radical —... [Pg.586]


See other pages where Nitrogen radicals, in pyrrolidine synthesis is mentioned: [Pg.306]    [Pg.344]    [Pg.306]    [Pg.344]    [Pg.22]    [Pg.208]    [Pg.778]    [Pg.455]    [Pg.275]    [Pg.214]    [Pg.286]    [Pg.55]    [Pg.322]    [Pg.27]    [Pg.42]    [Pg.570]    [Pg.4949]   


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Radicals in synthesis

Radicals synthesis

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