Pandey, Ganesh ; Rao, K. S. S. P. ; Nageshwar Rao, K. V. (2000) PhSeSiR3-catalyzed group transfer radical reactions Journal of Organic Chemistry, 65 (14). pp. 4309-4314. ISSN 0022-3263
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Official URL: http://pubs.acs.org/doi/abs/10.1021/jo000128z
Related URL: http://dx.doi.org/10.1021/jo000128z
Abstract
A novel design for initiating radical-based chemistry in a catalytic fashion is described. The design of the concept is based on the phenylselenyl group transfer reaction from alkyl phenyl selenides by utilizing PhSeSiR3 (1) as a catalytic reagent. The reaction is initiated by the homolytic cleavage of -C-Se- bond of an alkyl phenyl selenide by the in situ generated alkylsilyl radical (R3Si•), obtained by the mesolysis of PhSeSiR3]•-(1•-). The oxidative dimerization of counteranion PhSe- to PhSeSePh functions as radical terminator. The generation of 1•- is achieved by the photoinduced electron transfer (PET) promoted reductive activation of 1 through a photosystem comprising of a visible-light (410 nm)-absorbing electron rich DMA as an electron donor and ascorbic acid as a co-oxidant. The optimum mole ratio between the catalyst 1 and alkyl phenyl selenides for successful reaction is established to be 1:10. The generality of the concept is demonstrated by carrying out variety of radical reactions such as cyclization (10, 15-18), intermolecular addition (25), and tandem annulations (32).
Item Type: | Article |
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Source: | Copyright of this article belongs to American Chemical Society. |
ID Code: | 61013 |
Deposited On: | 13 Sep 2011 11:28 |
Last Modified: | 13 Sep 2011 11:28 |
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