1985
DOI: 10.1021/ja00300a030
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General method of diastereo- and enantioselective synthesis of β-hydroxy-α-amino acids by condensation of aldehydes and ketones with glycine

Abstract: mL and DMF and saturated with methylamine gas at 0 OC. The vessel was sealed and agitated for 1 day. The polymer was washed successively in dioxane, ethanol, 2 N NaOH/i-PrOH (l:l), water (until eluate neutral), ethanol, and ether. After drying in vacuo, the polymer (3.7 g/3.8 mequiv of amino groups/l g of dry weight) was suspended in a mixture of water (1.5 mL), ethanol (0.5 mL), triethylamine (7 mL), and 4chloropyridine hydrochloride (4.7 g) in a glass pressure vessel, sealed and heated for 4 days at 140 OC. … Show more

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Cited by 220 publications
(116 citation statements)
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“…However, all these reactions were performed in organic solvents. In this report, we have focused on nickel(II) glycinate, which is important for asymmetric synthesis of chiral amino acids (Belokon et al 1985;Cai et al 2004;Soloshonok et al 2001;Taylor et al 2004;Wang et al 2008). While significant progress has been made in the use of chiral nickel(II) glycinate in asymmetric synthesis of enantiopure amino acids, the development of diastereoselective Michael reactions using nickel(II) glycinate has proven to be a challenging task (Cai et al 2001;Soloshonok et al 2000Soloshonok et al , 2001.…”
Section: Introductionmentioning
confidence: 99%
“…However, all these reactions were performed in organic solvents. In this report, we have focused on nickel(II) glycinate, which is important for asymmetric synthesis of chiral amino acids (Belokon et al 1985;Cai et al 2004;Soloshonok et al 2001;Taylor et al 2004;Wang et al 2008). While significant progress has been made in the use of chiral nickel(II) glycinate in asymmetric synthesis of enantiopure amino acids, the development of diastereoselective Michael reactions using nickel(II) glycinate has proven to be a challenging task (Cai et al 2001;Soloshonok et al 2000Soloshonok et al , 2001.…”
Section: Introductionmentioning
confidence: 99%
“…The methodology has been introduced in organic and organometallic chemistry by Belokon in 1985 [63]. These chiral nickel complexes proved to be highly versatile and allowed a very high level of stereocontrolled C-11 alkylation reactions due to high acidity of the α-hydrogen.…”
Section: Racemic and Asymmetric Syntheses To Label Amino Acids In Thementioning
confidence: 99%
“…A synthetic pathway employing chiral nickel complexes prepared from α-amino acids and chiral auxiliary BPB ((S)-N-(2-benzoylphenyl)-N′-benzylprolinamide) is an exception. After preparation of desired α-amino acid, enantiomerically pure BPB·HCl is regenerated in high yield (>90%) 3 . The complexes provide easy generation of intermediate carbanion due to high acidity of α-hydrogen of an amino acid fragment (pK a ≥ 19) 4 .…”
mentioning
confidence: 99%