Catalysis is the essence of chemistry as it provides useful tools to make and brake chemical bonds. As nature has been a guide to many scientists, it’s no surprise that in the field of catalysis enzymes were a source of inspiration. Harnessing non covalent interactions, as enzymes do, is a fascinating perspective, and, since supramolecular chemistry became more and more involved in catalysis, a new discipline was born, named supramolecular catalysis. Since supramolecular hosts such as calix[n]arenes have been fruitfully employed in the synthesis of catalysts, in these work we report the design, characterization and applications of new calixarene based catalytic systems. In details chiral calix[4]arene amides 1-7 were employed as phase-transfer catalysts thanks to their cation complexing properties, while the calix[4]arene functionalized with a chiral primary amine-thiourea moiety 8 acted as bifunctional catalyst in several asymmetric conjugate addiction reactions. Finally dinuclear Zirconium-calix[8]arene complex 9 proved to be active in the ring opening polymerization of cyclic esters... [edited by Author]

Calixarene based catalytic systems / Nicola Alessandro De Simone , 2018 Feb 22., Anno Accademico 2016 - 2017. [10.14273/unisa-1458].

Calixarene based catalytic systems

De Simone, Nicola Alessandro
2018

Abstract

Catalysis is the essence of chemistry as it provides useful tools to make and brake chemical bonds. As nature has been a guide to many scientists, it’s no surprise that in the field of catalysis enzymes were a source of inspiration. Harnessing non covalent interactions, as enzymes do, is a fascinating perspective, and, since supramolecular chemistry became more and more involved in catalysis, a new discipline was born, named supramolecular catalysis. Since supramolecular hosts such as calix[n]arenes have been fruitfully employed in the synthesis of catalysts, in these work we report the design, characterization and applications of new calixarene based catalytic systems. In details chiral calix[4]arene amides 1-7 were employed as phase-transfer catalysts thanks to their cation complexing properties, while the calix[4]arene functionalized with a chiral primary amine-thiourea moiety 8 acted as bifunctional catalyst in several asymmetric conjugate addiction reactions. Finally dinuclear Zirconium-calix[8]arene complex 9 proved to be active in the ring opening polymerization of cyclic esters... [edited by Author]
22-feb-2018
Chimica
Guerra, Gaetano
Soriente, Annunziata
Neri, Placido
Kohnke, Franz Heinrich
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11386/4923861
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