Literature DB >> 15250731

Direct catalytic asymmetric Mannich-type reaction of hydroxyketone using a Et2Zn/linked-BINOL complex: synthesis of either anti- or syn-beta-amino alcohols.

Shigeki Matsunaga1, Takamasa Yoshida, Hiroyuki Morimoto, Naoya Kumagai, Masakatsu Shibasaki.   

Abstract

Full details of a direct catalytic asymmetric Mannich-type reaction of a hydroxyketone using a Et2Zn/(S,S)-linked-BINOL complex are described. By choosing the proper protective groups on imine nitrogen, either anti- or syn-beta-amino alcohol was obtained in good diastereomeric ratio, yield, and excellent enantiomeric excess using the same zinc catalysis. N-Diphenylphosphinoyl (Dpp) imine 3 gave anti-beta-amino alcohols in anti/syn = up to >98/2, up to >99% yield, and up to >99.5% ee, while Boc-imine 4 gave syn-beta-amino alcohols in anti/syn = up to 5/95, up to >99% yield, and up to >99.5% ee. The high catalyst turnover number (TON) is also noteworthy. Catalyst loading was successfully reduced to 0.02 mol % (TON = up to 4920) for the anti-selective reaction and 0.05 mol % (TON = up to 1760) for the syn-selective reaction. The Et2Zn/(S,S)-linked-BINOL complex exhibited far better TON than in previous reports of catalytic asymmetric Mannich-type reactions. Mechanistic studies to clarify the reason for the high catalyst efficiency as well as transformations of Mannich adducts are also described.

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Year:  2004        PMID: 15250731     DOI: 10.1021/ja0482435

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  11 in total

1.  Direct asymmetric anti-Mannich-type reactions catalyzed by a designed amino acid.

Authors:  Susumu Mitsumori; Haile Zhang; Paul Ha-Yeon Cheong; K N Houk; Fujie Tanaka; Carlos F Barbas
Journal:  J Am Chem Soc       Date:  2006-02-01       Impact factor: 15.419

2.  syn-1,2-Amino alcohols via diastereoselective allylic C-H amination.

Authors:  Kenneth J Fraunhoffer; M Christina White
Journal:  J Am Chem Soc       Date:  2007-05-22       Impact factor: 15.419

3.  Practical and highly enantioselective synthesis of beta-alkynyl-beta-amino esters through Ag-catalyzed asymmetric mannich reactions of silylketene acetals and alkynyl imines.

Authors:  Nathan S Josephsohn; Emma L Carswell; Marc L Snapper; Amir H Hoveyda
Journal:  Org Lett       Date:  2005-06-23       Impact factor: 6.005

4.  A direct catalytic asymmetric Mannich-type reaction via a dinuclear zinc catalyst: synthesis of either anti- or syn-alpha-hydroxy-beta-amino ketones.

Authors:  Barry M Trost; Jaray Jaratjaroonphong; Vichai Reutrakul
Journal:  J Am Chem Soc       Date:  2006-03-08       Impact factor: 15.419

5.  Direct Catalytic Asymmetric Mannich Reactions for the Construction of Quaternary Carbon Stereocenters.

Authors:  Barry M Trost; Tanguy Saget; Chao-I Joey Hung
Journal:  J Am Chem Soc       Date:  2016-03-09       Impact factor: 15.419

6.  Ag-catalyzed diastereo- and enantioselective vinylogous Mannich reactions of alpha-ketoimine esters. Development of a method and investigation of its mechanism.

Authors:  Laura C Wieland; Erika M Vieira; Marc L Snapper; Amir H Hoveyda
Journal:  J Am Chem Soc       Date:  2009-01-21       Impact factor: 15.419

7.  Three-component Ag-catalyzed enantioselective vinylogous mannich and Aza-Diels-Alder reactions with alkyl-substituted aldehydes.

Authors:  Hiroki Mandai; Kyoko Mandai; Marc L Snapper; Amir H Hoveyda
Journal:  J Am Chem Soc       Date:  2008-12-31       Impact factor: 15.419

8.  Allylic C-H amination for the preparation of syn-1,3-amino alcohol motifs.

Authors:  Grant T Rice; M Christina White
Journal:  J Am Chem Soc       Date:  2009-08-26       Impact factor: 15.419

9.  γ-, Diastereo-, and Enantioselective Addition of MEMO-Substituted Allylboron Compounds to Aldimines Catalyzed by Organoboron-Ammonium Complexes.

Authors:  Ryan J Morrison; Amir H Hoveyda
Journal:  Angew Chem Int Ed Engl       Date:  2018-08-01       Impact factor: 15.336

10.  Asymmetric Synthesis of γ-Amino Alcohols by Copper-Catalyzed Hydroamination.

Authors:  Saki Ichikawa; Stephen L Buchwald
Journal:  Org Lett       Date:  2019-10-18       Impact factor: 6.005

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