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dc.contributor.authorIuliano, Veronica
dc.date.accessioned2023-03-21T13:55:33Z
dc.date.available2023-03-21T13:55:33Z
dc.date.issued2021-05-11
dc.identifier.urihttp://elea.unisa.it:8080/xmlui/handle/10556/6514
dc.identifier.urihttp://dx.doi.org/10.14273/unisa-4585
dc.description2019 - 2020it_IT
dc.description.abstractOver the past three decades, the use of calixarenes as macrocyclic hosts in supramolecular chemistry has gained an increasing relevance, especially for the construction of molecular devices. Therefore, it is important to understand how to modify the supramolecular abilities of these macrocycles. In this PhD thesis, the threading abilities of calix[n]arenes with ammonium axles have been studied by modifying the calixarene scaffold. Initially, new hosts were obtained by functionalizing the upper rim, the lower rim, or the methylene bridges (Figure 1). From these studies, important information was gained to obtain increasingly stable interpenetrated systems.Subsequently, a trivalent calixarene host (Figure 2, left) was studied which led to the formation of multicomponent systems such as pseudo[3]- and -[4]rotaxanes. Finally, studies on self-sorting processes in pseudo[3]rotaxane systems (Figure 2, right) have been carried out. Thus, the peculiar ability of some diammonium axles to select the calixarene partner in the presence of other macrocycles has been highlighted. Furthermore, the selection takes place in a stereocontrolled way leading to the formation of selected stereo-adducts over those theoretically possible. [edited by Author]it_IT
dc.language.isoenit_IT
dc.publisherUniversita degli studi di Salernoit_IT
dc.subjectCalixareneit_IT
dc.titleStudy on calixarene threading: towards molecular machinesit_IT
dc.typeDoctoral Thesisit_IT
dc.subject.miurCHIM/06 CHIMICA ORGANICAit_IT
dc.contributor.coordinatorePellecchia, Claudioit_IT
dc.description.cicloXXXIII cicloit_IT
dc.contributor.tutorNeri, Placidoit_IT
dc.contributor.cotutorGaeta, Carmineit_IT
dc.contributor.cotutorTalotta, Carmenit_IT
dc.identifier.DipartimentoChimica e biologia "A. Zambelli"it_IT
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