Synthesis of fine chemicals, such as pharmaceuticals, agrochemicals, fragrances by using catalytic reactions under homogeneous, heterogeneous and biphasic reaction conditions

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dc.contributor.advisor Paganelli, Stefano it_IT
dc.contributor.author Rathod, Vikas Damu <1983> it_IT
dc.date.accessioned 2015-11-27 it_IT
dc.date.accessioned 2016-06-30T11:35:17Z
dc.date.available 2017-03-02T10:44:50Z
dc.date.issued 2016-01-25 it_IT
dc.identifier.uri http://hdl.handle.net/10579/8328
dc.description.abstract The aim of this thesis work was the synthesis, characterization and application of new catalysts to be used in reactions as hydrogenation, Heck reaction, Friedel-Crafts acylations, etc., in homogeneous or heterogeneous and/or in biphase systems. These reactions were applied first on model substrates and then for the synthesis of target pharmaceuticals and for fine chemicals intermediate. In particular it was studied the hydrogenation of carbon-carbon double bonds catalyzed by: 1) new heterogeneous catalysts with a low content of precious metal (Pd 0.28%, Rh 0.18%) on alumina: these catalysts were very easily prepared in a new greener solvent and showed a very high activity and selectivity; 2) Rhodium and Palladium catalysts, with suitable ligands (in particular polysaccharides and lactic acid derivatives), able to operate in both aqueous biphasic or homogeneous system. Heck reactions were carried out in homogeneous system by using palladium based catalysts in the presence or absence of suitable phosphino ligands; Friedel-Crafts acylations of heterocyclic compounds were studied by using different metal catalysts, in particular new iron and gallium polymeric fluorosulphonate, easily prepared by a convenient protocol. Most of these reactions were applied for the synthesis of the two target pharmaceuticals, the calcimimetic Cinacalcet and the antimigrane Eletriptan. Finally, some reactions for the synthesis of Cinacalcet were carried out under microwaves conditions in order to reduce the catalyst amount, the reaction time and to increase the chemical yield. Moreover, these reactions were carried out in more environmentally friendly solvents as Me-THF, CPME and -valerolactone. When possible the activity of these new catalysts was compared to that of commercially available catalyst and in some cases they showed better performances with respect to largely applied industrial catalysts, appearing so suitable for a possible commercial development. it_IT
dc.language.iso en it_IT
dc.publisher Università Ca' Foscari Venezia it_IT
dc.rights © Vikas Damu Rathod, 2016 it_IT
dc.title Synthesis of fine chemicals, such as pharmaceuticals, agrochemicals, fragrances by using catalytic reactions under homogeneous, heterogeneous and biphasic reaction conditions it_IT
dc.title.alternative it_IT
dc.type Doctoral Thesis it_IT
dc.degree.name Scienze chimiche it_IT
dc.degree.level Dottorato di ricerca it_IT
dc.degree.grantor Dipartimento di Scienze Molecolari e Nanosistemi it_IT
dc.description.academicyear 2014/2015, sessione 2014/2015 it_IT
dc.description.cycle 28 it_IT
dc.degree.coordinator Selva, Maurizio it_IT
dc.location.shelfmark D001578 it_IT
dc.location Venezia, Archivio Università Ca' Foscari, Tesi Dottorato it_IT
dc.rights.accessrights openAccess it_IT
dc.thesis.matricno 956039 it_IT
dc.format.pagenumber [11], 188 p. : ill. it_IT
dc.subject.miur CHIM/04 CHIMICA INDUSTRIALE it_IT
dc.description.note it_IT
dc.degree.discipline it_IT
dc.contributor.co-advisor Piccolo, Oreste it_IT
dc.contributor.co-advisor Kocevar, Marijan it_IT
dc.provenance.upload Vikas Damu Rathod (956039@stud.unive.it), 2015-11-27 it_IT
dc.provenance.plagiarycheck Stefano Paganelli (spag@unive.it), 2016-01-19 it_IT


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