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Core reactive biodegradable multiarm star polymers

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dc.contributor Graduate Program in Chemistry.
dc.contributor.advisor Sanyal, Rana.
dc.contributor.author Kılıç, Elif.
dc.date.accessioned 2023-03-16T11:01:39Z
dc.date.available 2023-03-16T11:01:39Z
dc.date.issued 2011.
dc.identifier.other CHEM 2011 K55
dc.identifier.uri http://digitalarchive.boun.edu.tr/handle/123456789/14476
dc.description.abstract Functionalizable macromolecules have attracted increasing attention as polymeric materials due to their wide application in material and biological sciences. Although a lot of work has been done in this area, little attention has been paid towards the synthesis of both functionalizable and biodegradable polymers. In this study, we synthesized functional biodegradable polymers with multiarm star architecture. The number of arms in the final polymer can be pre-determined by using an appropriate multifunctional initiator core. To meet this goal, core functional polyester dendrons containing furan protected maleimide group were synthesized as initiators of multiarm star polymers. DL-Lactide was chosen as biodegradable monomer because of advantages and widespread of application area of biomedical applications. Multiarm star polymers were produced via Ring Opening Polymerization (ROP) which provides good control on the molecular weight and polydispersity. After the polymerization, furan protected maleimide core of star polymer was deprotected to their thiol reactive form via retro Diels Alder reaction. Thiol containing molecule was attached to demonstrate reactivity of the polymer core.
dc.format.extent 30cm.
dc.publisher Thesis (M.S.)-Bogazici University. Institute for Graduate Studies in Science and Engineering, 2011.
dc.relation Includes appendices.
dc.relation Includes appendices.
dc.subject.lcsh Bioconjugates.
dc.title Core reactive biodegradable multiarm star polymers
dc.format.pages xvi, 52 leaves ;


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