31254-20-3Relevant academic research and scientific papers
Allylic and Allenylic Dearomatization of Indoles Promoted by Graphene Oxide by Covalent Grafting Activation Mode
Lombardi, Lorenzo,Bellini, Daniele,Bottoni, Andrea,Calvaresi, Matteo,Monari, Magda,Kovtun, Alessandro,Palermo, Vincenzo,Melucci, Manuela,Bandini, Marco
supporting information, p. 10427 - 10432 (2020/07/24)
The site-selective allylative and allenylative dearomatization of indoles with alcohols was performed under carbocatalytic regime in the presence of graphene oxide (GO, 10 wt percent loading) as the promoter. Metal-free conditions, absence of stoichiometric additive, environmentally friendly conditions (H2O/CH3CN, 55 °C, 6 h), broad substrate scope (33 examples, yield up to 92 percent) and excellent site- and stereoselectivity characterize the present methodology. Moreover, a covalent activation model exerted by GO functionalities was corroborated by spectroscopic, experimental and computational evidences. Recovering and regeneration of the GO catalyst through simple acidic treatment was also documented.
Regioselective and Stereospecific Rhodium-Catalyzed Allylic Cyanomethylation with an Acetonitrile Equivalent: Construction of Acyclic β-Quaternary Stereogenic Nitriles
Tom, Mai-Jan,Evans, P. Andrew
supporting information, p. 11957 - 11961 (2020/08/06)
A highly regioselective and stereospecific rhodium-catalyzed cyanomethylation of tertiary allylic carbonates for the construction of acyclic β-quaternary stereogenic nitriles is described. This protocol represents the first example of a metal-catalyzed al
Iron-promoted difunctionalization of alkenes by phenylselenylation/1,2-aryl migration
Wu, Ping,Wu, Kaikai,Wang, Liandi,Yu, Zhengkun
supporting information, p. 5450 - 5453 (2017/11/06)
Iron-promoted difunctionalization of α,α-diaryl and α-aryl-α-alkyl allylic alcohols has been efficiently achieved by means of N-(phenylseleno)phthalimide (N-PSP) under mild conditions. An in situ generated phenylselenium cation (PhSe+) was added to the ol
Stoichiometric release of SO2 from adducts: Application to the direct synthesis of protected dienes
Martial, Ludovic,Bischoff, Laurent
supporting information, p. 1225 - 1229 (2015/06/02)
Abstract The in situ, stoichiometric release of SO2 was studied from DABSO (DABCO adduct with SO2) and DMAP adduct. When involved in cheletropic additions, free SO2 released by this technique proved much more reactive than its adducts. Some examples of applications towards the direct synthesis of protected dienes from allylic alcohols are given.
Catalytic asymmetric torgov cyclization: A concise total synthesis of (+)-estrone
Prevost, Sebastien,Dupre, Nathalie,Leutzsch, Markus,Wang, Qinggang,Wakchaure, Vijay,List, Benjamin
supporting information, p. 8770 - 8773 (2014/08/18)
An asymmetric Torgov cyclization, catalyzed by a novel, highly Bronsted acidic dinitro-substituted disulfonimide, is described. The reaction delivers the Torgov diene and various analogues with excellent yields and enantioselectivity. This method was applied in a very short synthesis of (+)-estrone.
Enantioselective construction of all-carbon quaternary centers by branch-selective Pd-catalyzed allyl-allyl cross-coupling
Zhang, Ping,Le, Hai,Kyne, Robert E.,Morken, James P.
supporting information; experimental part, p. 9716 - 9719 (2011/08/04)
The Pd-catalyzed cross-coupling of racemic tertiary allylic carbonates and allylboronates is described. This reaction generates all-carbon quaternary centers in a highly regioselective and enantioselective fashion. The outcome of these reactions is consistent with a process that proceeds by way of 3,3′-reductive elimination of bis(η1-allyl)palladium intermediates. Strategies for distinguishing the product alkenes and application to the synthesis of (+)-α-cuparenone are also described.
SELECTIVE REDUCTION OF ALKYNES TO CIS-ALKENES BY HYDROMETALLATION USING 6
Daeuble, John F.,McGettigan, Colleen,Stryker, Jeffrey M.
, p. 2397 - 2400 (2007/10/02)
Selective reduction of alkynes to the corresponding alkenes is reported using the stable, readily prepared copper(I) hydride reagent, 6.Terminal alkynes are reduced at room temperature, unactivated internal alkynes react only at elevated temperature.Disubstituted alkynes with propargyl activation are also reduced, giving cis-olefins selectively.Protection of propargylic alcohol functionality is unnecessary, although fragmentation is sometimes competitive in sterically hindered cases.A tertiary propargyl acetate gave displacement to the allene exclusively.
