Novel complexes between methyltrioxorhenium (MTO) and natural polysaccharides like chitin and chitosan or modified chitosan-bearing N-substituted acyl or alkyl pyridine moieties were synthesized and used for the oxidation of alkenes including acid-sensitive styrene derivatives with urea hydrogen peroxide adduct (UHP) as primary oxidant High conversions and yields of the corresponding epoxides were obtained Silica-chitosan hybrid composites with increased surface area and mechanical properties were also prepared and used as MTO supports A correlation on the role played by the different MTO-coordinating ligand sites of supports on the experimental outcome of olefin catalytic oxidations is discussed
Chitin and Chitosan anchored methyltrioxorhenium: an innovative approach for selective heterogeneous catalytic epoxidations of olefins / Andrea Di, G., Marcello, C., Maurizio, P., Stefano, N., Saladino, R.. - In: JOURNAL OF CATALYSIS. - ISSN 0021-9517. - 276:(2010), pp. 412-422. [10.1016/j.jcat.2010.10.003]
Chitin and Chitosan anchored methyltrioxorhenium: an innovative approach for selective heterogeneous catalytic epoxidations of olefins
SALADINO R
2010
Abstract
Novel complexes between methyltrioxorhenium (MTO) and natural polysaccharides like chitin and chitosan or modified chitosan-bearing N-substituted acyl or alkyl pyridine moieties were synthesized and used for the oxidation of alkenes including acid-sensitive styrene derivatives with urea hydrogen peroxide adduct (UHP) as primary oxidant High conversions and yields of the corresponding epoxides were obtained Silica-chitosan hybrid composites with increased surface area and mechanical properties were also prepared and used as MTO supports A correlation on the role played by the different MTO-coordinating ligand sites of supports on the experimental outcome of olefin catalytic oxidations is discussedI documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


