There is high need of efficient heterogeneous catalysts for liquid-phase alcohol oxidations ('philosophers stones'). Sol-gel technology and stable nitroxyl radicals to the family of 2,2,6,6-tetramethyl-1-piperidinyloxy (TEMPO) may ineed offer the long awaited breakthrough in catalytic oxidations and the technology has been patented. Organic nitroxyl radicals are highly efficient molecular catalysts for selective, liquid-phase homogeneous oxidations of primary and secondary alcohols in the presence of a primary oxidant (including air) due to mildness and reactivity of the active species, the cyclic nitrosonium ion (TEMPO+). Sol-gel is by far the best technique to entrap organic molecules in inorganic porous solids whose physical and chemical properties can be aptly tailored by varying reaction conditions of the polymerization process ('sol-gel science'). Sol-gel microporous glasses doped with TEMPO have been prepared which do not lead to leaching of the radicals in solution and catalyse the selective oxidation of D-methylglucose and cinnamyl alcohol either in H2O or in organic solvent. Reaction rate have to be enhanced and work is in progress toward the preparation of sol-gel mesoporous membranes to be used in continuous oxidative processes.

On novel sol-gel catalytic materials for selective alcohol oxidation

Rosaria Ciriminna;Mario Pagliaro
1999

Abstract

There is high need of efficient heterogeneous catalysts for liquid-phase alcohol oxidations ('philosophers stones'). Sol-gel technology and stable nitroxyl radicals to the family of 2,2,6,6-tetramethyl-1-piperidinyloxy (TEMPO) may ineed offer the long awaited breakthrough in catalytic oxidations and the technology has been patented. Organic nitroxyl radicals are highly efficient molecular catalysts for selective, liquid-phase homogeneous oxidations of primary and secondary alcohols in the presence of a primary oxidant (including air) due to mildness and reactivity of the active species, the cyclic nitrosonium ion (TEMPO+). Sol-gel is by far the best technique to entrap organic molecules in inorganic porous solids whose physical and chemical properties can be aptly tailored by varying reaction conditions of the polymerization process ('sol-gel science'). Sol-gel microporous glasses doped with TEMPO have been prepared which do not lead to leaching of the radicals in solution and catalyse the selective oxidation of D-methylglucose and cinnamyl alcohol either in H2O or in organic solvent. Reaction rate have to be enhanced and work is in progress toward the preparation of sol-gel mesoporous membranes to be used in continuous oxidative processes.
1999
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
Inglese
Massimo Guglielmi, Plinio Innocenzi, Giovanna Brusatin, Alessandro Martucci
Atti del Workshop italiano SOL-GEL
Workshop Italiano Sol-Gel
65
69
5
88-8260-008-4
CUSL Nuovavita
Padova
ITALIA
Sì, ma tipo non specificato
11 giugno 1999
Padova
3
none
Ciriminna, Rosaria; Avnir, David; Pagliaro, Mario
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/171581
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