1006692-56-3Relevant academic research and scientific papers
Efficient and practical synthesis of N-acetyl enamides from ketoximes by unique iron catalytic system
Kunishige, Takahiro,Sawada, Daisuke
, p. 1562 - 1565 (2019/05/24)
A new procedure for the iron-catalyzed synthesis of enamides from ketoximes was developed, and its mechanism was proposed. A unique reduction system, with the concerted use of KI and Na2S2O4, was involved. The reaction exhibited a wide substrate scope and gave good yields in a short reaction time. The procedure is operationally simple and also applicable for the large-scale synthesis.
METHOD FOR PREPARING ENAMIDE COMPOUND AND RUTHENIUM COMPLEX CATALYST USED THEREIN
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Paragraph 0139, (2017/10/27)
Provided is a method for preparing an enamide compound, which includes reacting an organic azide compound having α-hydrogen and an anhydride by addition of a ruthenium complex catalyst in the presence of an ionic liquid, and a ruthenium complex catalyst u
CATALYTIC PREPARATION OF ENAMIDES FROM ALKYL AZIDES AND ACYL DONORS
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Paragraph 0128-0129, (2016/10/10)
The present invention relates to a method to synthesize an enamide compound by generating imine which does not have a substituent group bonded to the nitrogen from an organic azide compound and conducting a reaction of the same with acyl doner. By using t
Axially Chiral Enamides: Substituent Effects, Rotation Barriers, and Implications for their Cyclization Reactions
Clark, Andrew J.,Curran, Dennis P.,Fox, David J.,Ghelfi, Franco,Guy, Collette S.,Hay, Benjamin,James, Natalie,Phillips, Jessica M.,Roncaglia, Fabrizio,Sellars, Philip B.,Wilson, Paul,Zhang, Hanmo
, p. 5547 - 5565 (2016/07/14)
The barrier to rotation around the N-alkenyl bond of 38 N-alkenyl-N-alkylacetamide derivatives was measured (ΔG∞ rotation varied between -1). The most important factor in controlling the rate of rotation was the level of alkene substitution, followed by the size of the nitrogen substituent and, finally, the size of the acyl substituent. Tertiary enamides with four alkenyl substituents exhibited half-lives for rotation between 5.5 days and 99 years at 298 K, sufficient to isolate enantiomerically enriched atropisomers. The radical cyclizations of a subset of N-alkenyl-N-benzyl-α-haloacetamides exhibiting relatively high barriers to rotation round the N-alkenyl bond (ΔG∞ rotation >20 kcal mol-1) were studied to determine the regiochemistry of cyclization. Those with high barriers (>27 kcal mol-1) did not lead to cyclization, but those with lower values produced highly functionalized γ-lactams via a 5-endo-trig radical-polar crossover process that was terminated by reduction, an unusual cyclopropanation sequence, or trapping with H2O, depending upon the reaction conditions. Because elevated temperatures were necessary for cyclization, this precluded study of the asymmetric transfer in the reaction of individual atropisomers. However, enantiomerically enriched atropsiomeric enamides should be regarded as potential asymmetric building blocks for reactions that can be accomplished at room temperature.
Synthesis of Enamides by Ruthenium-Catalyzed Reaction of Alkyl Azides with Acid Anhydrides in Ionic Liquid
Pak, Han Kyu,Han, Junghoon,Jeon, Mina,Kim, Yongjin,Kwon, Yearang,Park, Jin Yong,Rhee, Young Ho,Park, Jaiwook
, p. 4030 - 4034 (2015/12/26)
Enamides were synthesized by a ruthenium-catalyzed one-pot, one-step procedure from alkyl azides and acid anhydrides. The substrate scope includes not only secondary azides, but also primary aliphatic ones to give a wide range of enamides containing vario
Exploiting the Nucleophilicity of N-H Imines: Synthesis of Enamides from Alkyl Azides and Acid Anhydrides
Han, Junghoon,Jeon, Mina,Pak, Han Kyu,Rhee, Young Ho,Park, Jaiwook
supporting information, p. 2769 - 2774 (2016/02/18)
The nucleophilicity of N-unsubstituted imines, which were generated from alkyl azides by a ruthenium-catalyzed reaction, was investigated in the reaction with acid anhydrides. The initial products were N-acylimines, which isomerized to the corresponding e
Direct titanium-mediated conversion of ketones into enamides with ammonia and acetic anhydride
Reeves, Jonathan T.,Tan, Zhulin,Han, Zhengxu S.,Li, Guisheng,Zhang, Yongda,Xu, Yibo,Reeves, Diana C.,Gonnella, Nina C.,Ma, Shengli,Lee, Heewon,Lu, Bruce Z.,Senanayake, Chris H.
supporting information; experimental part, p. 1400 - 1404 (2012/03/26)
A one-step conversion of ketones into N-acetyl enamides was developed. The process employs safe and inexpensive reagents, proceeds under mild conditions, and tolerates diverse functional groups. The addition of edte (N,N,N ,N -tetrakis(2-hydroxyethyl)ethy
Synthesis of enamides via Rh/C-catalyzed direct hydroacylation of ketoximes
Guan, Zheng-Hui,Huang, Kexuan,Yu, Shichao,Zhang, Xumu
supporting information; experimental part, p. 481 - 483 (2009/07/18)
(Chemical Equation Presented) Enamides were efficiently prepared via a novel Rh/C-catalyzed direct hydroacylation of ketoximes. Up to 88% isolated yield of enamides were obtained with this method. Subsequent asymmetric hydrogenation of the enamides with Rh/DuanPhos complex gave the corresponding chiral amine in excellent enantioselectivities (up to 99.7% ee).
A facile and practical synthesis of N-acetyl enamides
Tang, Wenjun,Capacci, Andrew,Sarvestani, Max,Wei, Xudong,Yee, Nathan K.,Senanayake, Chris H.
supporting information; experimental part, p. 9528 - 9530 (2010/03/24)
(Chemical Equation Presented) A facile and practical method for the synthesis of N-acetyl α-arylenamides has been developed from corresponding ketoximes as the starting materials with ferrous acetate as the reducing reagent. This methodology offers mild reaction conditions, simple purification procedures, and high yields for a variety of N-acetyl enamides.
