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214 related items for PubMed ID: 36417504
1. Multicatalysis protocol enables direct and versatile enantioselective reductive transformations of secondary amides. Chen H, Wu ZZ, Shao DY, Huang PQ. Sci Adv; 2022 Nov 25; 8(47):eade3431. PubMed ID: 36417504 [Abstract] [Full Text] [Related]
2. Deoxygenative Radical Boration of Inert Amides via a Combination of Relay and Cooperative Catalysis. Jiang F, Li J, Wang X. Chemistry; 2023 Jun 22; 29(35):e202301199. PubMed ID: 37074233 [Abstract] [Full Text] [Related]
3. Enantioselective Reductive Cyanation and Phosphonylation of Secondary Amides by Iridium and Chiral Thiourea Sequential Catalysis. Chen DH, Sun WT, Zhu CJ, Lu GS, Wu DP, Wang AE, Huang PQ. Angew Chem Int Ed Engl; 2021 Apr 12; 60(16):8827-8831. PubMed ID: 33484032 [Abstract] [Full Text] [Related]
5. Construction of Axially Chiral Compounds via Asymmetric Organocatalysis. Wang YB, Tan B. Acc Chem Res; 2018 Feb 20; 51(2):534-547. PubMed ID: 29419282 [Abstract] [Full Text] [Related]
6. P-Chiral Phosphorus Ligands Based on a 2,3-Dihydrobenzo[ d][1,3]oxaphosphole Motif for Asymmetric Catalysis. Xu G, Senanayake CH, Tang W. Acc Chem Res; 2019 Apr 16; 52(4):1101-1112. PubMed ID: 30848882 [Abstract] [Full Text] [Related]
9. Highly Enantioselective Synthesis of Propargyl Amides through Rh-Catalyzed Asymmetric Hydroalkynylation of Enamides: Scope, Mechanism, and Origin of Selectivity. Bai XY, Zhang WW, Li Q, Li BJ. J Am Chem Soc; 2018 Jan 10; 140(1):506-514. PubMed ID: 29232516 [Abstract] [Full Text] [Related]
11. Asymmetric organocatalysis combined with metal catalysis: concept, proof of concept, and beyond. Chen DF, Han ZY, Zhou XL, Gong LZ. Acc Chem Res; 2014 Aug 19; 47(8):2365-77. PubMed ID: 24911184 [Abstract] [Full Text] [Related]