The enantiomers of amino acid benzyl esters are very important synthetic intermediates. Many of them are currently prepared by treatment with benzyl alcohol and p-toluenesulfonic acid in refluxing benzene or carbon tetrachloride, to azeotropically remove water, and then precipitated as tosylate salt by adding diethyl ether. Here, we report a very efficient preparation of eight l- or d-amino acid benzyl esters (Ala, Phe, Tyr, Phg, Val, Leu, Lys, Ser), in which these highly hazardous solvents are dismissed using cyclohexane as a water azeotroping solvent and ethyl acetate to precipitate the tosylate salt. With some work-up modifications and lower yield, the procedure can be applied also to methionine. Chiral HPLC analysis shows that all the benzyl esters, including the highly racemizable ones such as those of phenylglycine, tyrosine and methionine, are formed enantiomerically pure under these new reaction conditions thus validating the solvents replacement. Contrariwise, toluene cannot be used in place of benzene or carbon tetrachloride because leading to partially or totally racemized amino acid benzyl esters depending on the polar effect of the amino acid α-side chain as expressed by Taft’s substituent constant (σ*).

One-step preparation of enantiopure L- or D-amino acid benzyl esters avoiding the use of banned solvents / C. Bolchi, F. Bavo, M. Pallavicini. - In: AMINO ACIDS. - ISSN 0939-4451. - 49:5(2017 May), pp. 965-974. [10.1007/s00726-017-2400-y]

One-step preparation of enantiopure L- or D-amino acid benzyl esters avoiding the use of banned solvents

C. Bolchi;F. Bavo;M. Pallavicini
2017

Abstract

The enantiomers of amino acid benzyl esters are very important synthetic intermediates. Many of them are currently prepared by treatment with benzyl alcohol and p-toluenesulfonic acid in refluxing benzene or carbon tetrachloride, to azeotropically remove water, and then precipitated as tosylate salt by adding diethyl ether. Here, we report a very efficient preparation of eight l- or d-amino acid benzyl esters (Ala, Phe, Tyr, Phg, Val, Leu, Lys, Ser), in which these highly hazardous solvents are dismissed using cyclohexane as a water azeotroping solvent and ethyl acetate to precipitate the tosylate salt. With some work-up modifications and lower yield, the procedure can be applied also to methionine. Chiral HPLC analysis shows that all the benzyl esters, including the highly racemizable ones such as those of phenylglycine, tyrosine and methionine, are formed enantiomerically pure under these new reaction conditions thus validating the solvents replacement. Contrariwise, toluene cannot be used in place of benzene or carbon tetrachloride because leading to partially or totally racemized amino acid benzyl esters depending on the polar effect of the amino acid α-side chain as expressed by Taft’s substituent constant (σ*).
No
English
Amino acid benzyl ester; Water azeotrope; Racemization; Chiral HPLC; Cyclohexane; Toluene; Taft’s substituent constant
Settore CHIM/06 - Chimica Organica
Settore CHIM/04 - Chimica Industriale
Settore CHIM/08 - Chimica Farmaceutica
Articolo
Esperti anonimi
Ricerca applicata
Pubblicazione scientifica
mag-2017
Springer
49
5
965
974
10
Pubblicato
Periodico con rilevanza internazionale
IF: 3.520 Quartile: Q3
Aderisco
info:eu-repo/semantics/article
One-step preparation of enantiopure L- or D-amino acid benzyl esters avoiding the use of banned solvents / C. Bolchi, F. Bavo, M. Pallavicini. - In: AMINO ACIDS. - ISSN 0939-4451. - 49:5(2017 May), pp. 965-974. [10.1007/s00726-017-2400-y]
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Prodotti della ricerca::01 - Articolo su periodico
3
262
Article (author)
Periodico con Impact Factor
C. Bolchi, F. Bavo, M. Pallavicini
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/489759
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