Chemoselective and metal-free reduction of α,β-unsaturated ketones by <i>in situ</i> produced benzeneselenol from <i>O</i>-(<i>tert</i>-butyl) Se-phenyl selenocarbonate
The carbon–carbondouble bond of arylidene acetones and chalcones can be selectively reduced with benzeneselenol generated in situ by reacting O-(tert-butyl) Se-phenyl selenocarbonate with hydrochloric acid in ethanol. This mild, metal-free and experimentally simple reduction procedure displays considerable functional-group compatibility, products are obtained in good to excellent yields, and the use
Ceric ammonium nitrate (CAN) as a green and highly efficient promoter for the 1,4-addition of thiols and benzeneselenol to α,β-unsaturated ketones
作者:Cheng-Ming Chu、Shijay Gao、M.N.V. Sastry、Chun-Wei Kuo、Chaowei Lu、Ju-Tsung Liu、Ching-Fa Yao
DOI:10.1016/j.tet.2006.12.018
日期:2007.2
efficient process for the 1,4-addition of thiols and benzeneselenols to various α,β-unsaturatedketones using a catalytic amount of CAN with excellent product yields is described. This inexpensive, nontoxic, and readily available catalytic ceric(IV) ammonium nitrate system efficiently catalyzes conjugate addition reactions between thiol derivatives and various α,β-unsaturatedketones under solvent-free conditions
Zn/RuCl<sub>3</sub>-Promoted Cleavage of Diselenides: An Efficient Michael Addition of Zinc Selenolates to Conjugated Alkenes in Aqueous Media
作者:Barahman Movassagh、Ameneh Tatar
DOI:10.1055/s-2007-984495
日期:2007.7
simple and highly efficient one-pot route to β-selenocarbonyl compounds and nitriles has been developed by Zn/RuCl 3 -catalyzed cleavage of diselenides and subsequent Michael addition of zinc selenolates to conjugated alkenes in aqueousmedia.
communication we report that our reagent PhSeZnCl can be conveniently used to effect Michael addition like reactions of unsaturated ketones and electron-deficient alkynes, leading to synthetically useful β-seleno derivatives and vinyl selenides, respectively. The reactions are effected at room temperature in THF as well as under "on water" conditions. When the addition occurs on a triple bond, good stereoselectivity