1117975-56-0Relevant academic research and scientific papers
Pentafluorophenyl vinyl sulfonate enables efficient, metal-free, radical-based alkene hydroacylation with an aldehyde as a limiting reagent
Chudasama, Vijay
, p. 44423 - 44426 (2015/06/02)
The unique properties of pentafluorophenyl vinyl sulfonate allow for a hitherto unmet feat to be realised; efficient and high yielding, metal-free, radical-based alkene hydroacylation employing aldehyde as limiting reagent. The optimised conditions are sh
Metal-free, hydroacylation of CC and NN bonds via aerobic C-H activation of aldehydes, and reaction of the products thereof
Chudasama, Vijay,Akhbar, Ahmed R.,Bahou, Karim A.,Fitzmaurice, Richard J.,Caddick, Stephen
, p. 7301 - 7317 (2013/10/22)
In this report, a thorough evaluation of the use of aerobically initiated, metal-free hydroacylation of various CC and NN acceptor molecules with a wide range of aldehydes is presented. The aerobic-activation conditions that have been developed are in sharp contrast to previous conditions for hydroacylation, which tend to use transition metals, peroxides that require thermal or photochemical degradation, or N-heterocyclic carbenes. The mildness of the conditions enables a number of reactions involving sensitive reaction partners and, perhaps most significantly, allows for α-functionalised chiral aldehydes to undergo radical-based hydroacylation with complete retention of optical purity. We also demonstrate how the resulting hydroacylation products can be transformed into other useful intermediates, such as γ-keto- sulfonamides, sultams, sultones, cyclic N-sulfonyl imines and amides.
Dioxygen mediated hydroacylation of vinyl sulfonates and sulfones on water
Chudasama, Vijay,Fitzmaurice, Richard J.,Ahern, Jenna M.,Caddick, Stephen
supporting information; experimental part, p. 133 - 135 (2010/04/01)
Herein we report a mild, facile method for the preparation of 1,4-keto-sulfonates and sulfones on water. Further synthetic manipulations can result in products that are not readily accessed by hydroacylation of electron rich alkenes.
Synthesis of unsymmetrical ketones via simple C-H activation of aldehydes and concomitant hydroacylation of vinyl sulfonates
Fitzmaurice, Richard J.,Ahern, Jenna M.,Caddick, Stephen
supporting information; experimental part, p. 235 - 237 (2009/03/11)
A new and simple protocol for the direct functionalisation of aldehydes with concomitant conversion into ketones via C-C bond formation has been developed. The reaction effectively enables the direct C-H activation of an aldehyde by mixing of an aldehyde
