Surface-Improved Asymmetric Michael Addition Catalyzed by Amino Acids Adsorbed on Laponite

An unprecedented enantioselectivity increase was observed in the presence of inorganic oxides in the asymmetric Michael addition of aldehydes to trans-beta-nitrostyrene derivatives catalyzed by amino acids. The best results were reached in the L-proline catalyzed addition of linear aldehydes using l...

Teljes leírás

Elmentve itt :
Bibliográfiai részletek
Szerzők: Szőllősi György
Gombkötő Péter
Mogyorós Attila Zsolt
Fülöp Ferenc
Dokumentumtípus: Cikk
Megjelent: 2018
Sorozat:ADVANCED SYNTHESIS & CATALYSIS 360 No. 10
doi:10.1002/adsc.201701627

mtmt:3383948
Online Access:http://publicatio.bibl.u-szeged.hu/14630
LEADER 02681nab a2200253 i 4500
001 publ14630
005 20190205125736.0
008 190205s2018 hu o 0|| angol d
022 |a 1615-4150 
024 7 |a 10.1002/adsc.201701627  |2 doi 
024 7 |a 3383948  |2 mtmt 
040 |a SZTE Publicatio Repozitórium  |b hun 
041 |a angol 
100 1 |a Szőllősi György 
245 1 0 |a Surface-Improved Asymmetric Michael Addition Catalyzed by Amino Acids Adsorbed on Laponite  |h [elektronikus dokumentum] /  |c  Szőllősi György 
260 |c 2018 
300 |a 1992-2004 
490 0 |a ADVANCED SYNTHESIS & CATALYSIS  |v 360 No. 10 
520 3 |a An unprecedented enantioselectivity increase was observed in the presence of inorganic oxides in the asymmetric Michael addition of aldehydes to trans-beta-nitrostyrene derivatives catalyzed by amino acids. The best results were reached in the L-proline catalyzed addition of linear aldehydes using laponite RD as additive, approaching those obtained using synthetic chiral organocatalysts. In our study we have shown that the asymmetric Michael addition is catalyzed by the organic-inorganic hybrid material formed insitu by adsorption of the amino acid on the solid surface. The chiral solid catalyst could be pre-prepared and recycled several times with maintained stereoselectivities, showing a slow decrease in the activity, which could be restored by adding proline during reuse. Characterization of the chiral hybrid material by FT-IR spectroscopy and XRD measurements indicated anchoring of the proline on the surface of the laponite particles. Effect of the chiral organocatalyst structure was used to evidence the involvement of both the carboxylic acid and the amino group in anchoring the organic compound on the solid surface. Linear natural amino acids became also active in the asymmetric Michael addition following adsorption on laponite and provided the opposite enantiomer in excess as compared with l-proline. The heterogeneous catalyst was applied in reactions of various carbonyl compounds and substituted nitrostyrene derivatives. Based on results obtained in this study combined with the previously reported amino acid catalyzed reactions on solid surfaces and the recently revisited reaction mechanism of this asymmetric addition a plausible reaction pathway occurring on the surface was proposed. 
700 0 1 |a Gombkötő Péter  |e aut 
700 0 1 |a Mogyorós Attila Zsolt  |e aut 
700 0 1 |a Fülöp Ferenc  |e aut 
856 4 0 |u http://publicatio.bibl.u-szeged.hu/14630/2/3383948.pdf  |z Dokumentum-elérés  
856 4 0 |u http://publicatio.bibl.u-szeged.hu/14630/1/Szolossy2018-Advanced_Synthesis__Catalysis.pdf  |z Dokumentum-elérés