A new pyridine-2,6-bis(oxazoline) (4) has been easily synthesised from the reaction of (1S,2S)-2-amino-1- phenylpropane-1,3-diol (1) and dimethyl pyridine-2,6-dicarboximidate (2), followed by TIPS (TIPS=triisopropylsilyl) protection of the 4’-CH2OH group. The catalysts derived from 4 and eight lanthanide(iii) triflates have been tested over three reactions involving 3- acryloyl- and 3-crotonoyloxazolidinones (5a,b): the Diels–Alder (DA) reaction with cyclopentadiene, the 1,3-dipolar cycloaddition with diphenyl nitrone and the Mukaiyama–Michael reaction with 2-trimethylsilyloxyfuran. Several reactions exhibit very good enantioselectivity (ee>90%), and the opposite enantiomers can be easily obtained simply by changing the cation. This specific feature of the ligand can be appreciated in the DA reaction of 5a, since the catalyst [ScIII(4)] gives the adduct (2’S)-9a with 99% ee, whereas the catalyst [YIII(4)] gives the opposite enantiomer with 95% ee. A rationale of the enantioselectivity is proposed on the basis of the NMR spectra of La based complexes involving 4 and 5 as ligands.

A new pyridine-2,6-bis(oxazoline) for efficient and flexible lanthanide-based catalysts of enantioselective reactions with 3-alkenoyl-2-oxazolidinones

DESIMONI, GIOVANNI;FAITA, GIUSEPPE;GUALA, MATILDE;MELLA, MARIELLA
2005-01-01

Abstract

A new pyridine-2,6-bis(oxazoline) (4) has been easily synthesised from the reaction of (1S,2S)-2-amino-1- phenylpropane-1,3-diol (1) and dimethyl pyridine-2,6-dicarboximidate (2), followed by TIPS (TIPS=triisopropylsilyl) protection of the 4’-CH2OH group. The catalysts derived from 4 and eight lanthanide(iii) triflates have been tested over three reactions involving 3- acryloyl- and 3-crotonoyloxazolidinones (5a,b): the Diels–Alder (DA) reaction with cyclopentadiene, the 1,3-dipolar cycloaddition with diphenyl nitrone and the Mukaiyama–Michael reaction with 2-trimethylsilyloxyfuran. Several reactions exhibit very good enantioselectivity (ee>90%), and the opposite enantiomers can be easily obtained simply by changing the cation. This specific feature of the ligand can be appreciated in the DA reaction of 5a, since the catalyst [ScIII(4)] gives the adduct (2’S)-9a with 99% ee, whereas the catalyst [YIII(4)] gives the opposite enantiomer with 95% ee. A rationale of the enantioselectivity is proposed on the basis of the NMR spectra of La based complexes involving 4 and 5 as ligands.
2005
The Organic Chemistry/Polymer Science category includes resources concerned with the related fields of organic chemistry and polymer science. The organic chemistry resources deal with compounds of carbon with the exception of certain simple ones, such as the carbon oxides, carbonates, cyanides and cyanates (see Inorganic & Nuclear Chemistry). This category includes research on synthetic and natural organic compounds that may include other elements, such as hydrogen and oxygen, but also nitrogen, halogens, sulphur and phosphorous. Resources concerned with hydrocarbons, organic compounds containing only the elements carbon and hydrogen, are also included in this category. Examples are the alkanes, alkenes, alkynes and aromatics, such as benzene and naphthalene. Polymer science includes all resources dealing with the study, production and technology of polymers, which are compounds composed of very large molecules made up of repeating molecular units (monomers). Polymers may be natural substances, such as polysaccharides or proteins, or synthetic materials, such as nylon or polyethylene.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
11
3816
3824
Asymmetric Catalys; PYBOX; Lanthanides
5
info:eu-repo/semantics/article
262
Desimoni, Giovanni; Faita, Giuseppe; Guala, Matilde; Laurenti, Anna; Mella, Mariella
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/133840
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