871797-58-9Relevant academic research and scientific papers
Synthesis of 3-mono-substituted binaphthyl-based secondary amine catalysts via monobromination of an axially chiral dicarboxylic acid derivative
Kano, Taichi,Takeda, Momotaro,Sakamoto, Ryu,Maruoka, Keiji
, p. 4240 - 4244 (2014)
A facile synthetic route to a 3-bromo binaphthyl-based secondary amine through the monobromination of an axially chiral dicarboxylic acid derivative has been developed. The combination of this new procedure with coupling reactions established an efficient synthetic approach to a series of binaphthyl-based secondary amine catalysts containing various functional groups in an efficient way.
Enantioselective aerobic oxidative cross-dehydrogenative coupling of glycine derivatives with ketones and aldehydes: Via cooperative photoredox catalysis and organocatalysis
Li, Ying,Xie, Zhixiang,Yang, Xiaorong,Zhang, Yuan
, p. 4741 - 4746 (2020/06/18)
The combination of photoredox catalysis and enamine catalysis has enabled the development of an enantioselective aerobic oxidative cross-dehydrogenative coupling between glycine derivatives and simple ketones or aldehydes, which provides an efficient appr
Monolithic Silica Support for Immobilized Catalysis in Continuous Flow
Russell, M. Grace,Veryser, Cedrick,Hunter, James F.,Beingessner, Rachel L.,Jamison, Timothy F.
supporting information, p. 314 - 319 (2019/12/24)
Monolithic and packed-bed reactors featuring immobilized catalysts are well-precedented in continuous flow synthesis but can suffer from adverse pressure drops during use due to their small pore sizes and/or structural changes. Herein, we overcome this challenge with the synthesis of a structurally robust silica-based monolith featuring pore sizes on the millimeter scale. The 3-dimensional solid support structure is constructed from a polystyrene foam-based template and features a functional group handle that can be modified to display a reactive catalyst. Here we functionalize the support with palladium(0) for hydrogenation reactions and a modified proline catalyst for the alpha functionalization of aldehydes. Both reactors showed good activity and excellent catalytic longevity when utilized under continuous flow conditions. (Figure presented.).
Enantioselective anti-Mannich reaction catalyzed by modularly designed organocatalysts
Konda, Swapna,Zhao, John C.-G.
, p. 6166 - 6172 (2018/09/12)
A highly stereoselective method for achieving the anti-Mannich reaction of aldehydes and ketones with ethyl (4-methoxyphenylimino)acetate was realized using the modularly designed organocatalysts (MDOs) self-assembled from cinchona alkaloid derivatives an
Design and synthesis of a biphenyl-based chiral amino sulfonamide with high catalytic performance in Mannich reactions
Kano, Taichi,Maruyama, Hiroki,Akiyama, Koichiro,Maruoka, Keiji
, p. 4227 - 4229 (2014/07/22)
A biphenyl-based amino sulfonamide was designed to improve the intrinsic low catalytic activity of amine organocatalysts. The newly synthesized amino sulfonamide catalyst promoted the Mannich reaction in a highly enantioselective fashion and a remarkable
Asymmetric anti-Mannich reactions in continuous flow
Martin-Rapun, Rafael,Sayalero, Sonia,Pericas, Miquel A.
supporting information, p. 3295 - 3301 (2013/12/04)
A polystyrene-supported, pyrrolidine-based catalyst depicting very high activity and excellent stereoselectivity in the anti-Mannich reaction of aldehydes and ketones has been developed. The very robust, immobilized catalyst has been successfully used in
Highly active organocatalysts for asymmetric anti-mannich reactions
Martín-Rapún, Rafael,Fan, Xinyuan,Sayalero, Sonia,Bahramnejad, Mahboubeh,Cuevas, Félix,Pericàs, Miquel A.
supporting information; experimental part, p. 8780 - 8783 (2011/09/15)
Lighten the load! A family of enantiopure 4-oxy-substituted 3-aminopyrrolidines arising from the enantioselective ring-opening of meso-3-pyrroline oxide have been developed as catalysts for the asymmetric, anti-selective Mannich reaction (see scheme; PMP=
A designer axially chiral amino sulfonamide as an efficient organocatalyst for direct asymmetric anti/-selective mannich reactions and syw-selective cross-aldol reactions
Kano, Taichi,Yamaguchi, Yukako,Maruoka, Keiji
supporting information; experimental part, p. 6678 - 6687 (2010/02/28)
A direct asymmetric Mannich reaction using a novel axially chiral amino sulfonamide (S)-3 that is highly anti- and enantioselective has been developed. For instance, in the presence of a catalytic amount of (S)-3, the reactions between aldehydes and a-imino esters proceeded smoothly to give anti Mannich products with a significantly higher antilsyn ratio and enantioselectivity than previously possible. By utilizing N-Boc-protected aro-matic imines instead of a-imino esters, the synthetically useful Boc protecting group and various aromatic or heteroaromatic substituents were installed into the anti Mannich products and consequently the substrate scope of the anri'-selective Mannich reaction and the synthetic utility of the anti Mannich products have been expanded. The axially chiral amino sulfonamide (S)-3 has also been successfully applied to asymmetric direct cross-aldol reaction between two different aldehydes. The catalyst (S)-3 has the advantage of giving mainly syn products, whereas proline shows the opposite anti selectivity.
3-trifluoromethanesulfonamido-Pyrrolidine: A general organocatalyst for antf-selective mannich reactions
Pouliquen, Mickael,Blanchet, Jerome,Lasne, Marie-Claire,Rouden, Jacques
supporting information; experimental part, p. 1029 - 1032 (2009/04/07)
Mannich-type reactions of a glyoxylate imine with carbonyl compounds catalyzed by 3-trifluoromethanesulfonamidopyrrolidine proceed with high yields and anfi-stereoselectivity. The catalyst is easily prepared and the transformation appears to be quite general accommodating aldehydes or ketones.
Catalysis of 3-pyrrolidinecarboxylic acid and related pyrrolidine derivatives in enantioselective anti-Mannich-type reactions: Importance of the 3-acid group on pyrrolidine for stereocontrol
Zhang, Haile,Mitsumori, Susumu,Utsumi, Naoto,Imai, Masanori,Garcia-Delgado, Noemi,Mifsud, Maria,Albertshofer, Klaus,Cheong, Paul Ha-Yeon,Houk,Tanaka, Fujie,Barbas III, Carlos F.
, p. 875 - 886 (2008/09/20)
The development of enantioselective anti-selective Mannich-type reactions of aldehydes and ketones with imines catalyzed by 3-pyrrolidinecarboxylic acid and related pyrrolidine derivatives is reported in detail. Both (3R,5R)-5-methyl-3-pyrrolidinecarboxylic acid and (R)-3-pyrrolidinecarboxylic acid efficiently catalyzed the reactions of aldehydes with α-imino esters under mild conditions and afforded anti-Mannich products with high diastereo- and enantioselectivities (anti/syn up to 99:1, up to >99% ee). For the reactions of ketones with α-imino esters, (R)-3-pyrrolidinecarboxylic acid was an efficient catalyst (anti/syn up to >99:1, up to 99% ee). Evaluation of a series of pyrrolidine-based catalysts indicated that the acid group at the β-position of the pyrrolidine ring of the catalyst played an important role in forwarding the carbon-carbon bond formation and in directing anti-selectivity and enantioselectivity.
