Oligo(p-Phenylenevinylene) Derived Organogels: A Novel Class of Functional Supramolecular Materials

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Oligo(p-Phenylenevinylene) Derived Organogels: A Novel Class of Functional Supramolecular Materials

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dc.contributor.author Subi Jacob, George
dc.contributor.author Dr. Ajayaghosh, A
dc.date.accessioned 2012-03-01T09:04:44Z
dc.date.available 2012-03-01T09:04:44Z
dc.date.issued 2004-10
dc.identifier.uri http://dyuthi.cusat.ac.in/purl/2795
dc.description.abstract The main objective of the present study is to have a detailed investigation on the gelation properties, morphology and optical properties of small π-conjugated oligomers. For this purpose we have chosen oligo(p-phenylenevinylene)s (OPVs), a class of molecules which have received considerable attention due to their unique optical and electronic properties. Though a large number of reports are available in the literature on the self-assembly properties of tailor made OPVs, none of them pertain to the design of nanostructures based on organogels. In view of this, we aimed at the creation of functional chromophoric assemblies of π-conjugated OPVs through the formation of organogels, with the objective of crafting nanoscopic assemblies of different size and shape thereby modulating their optical and electronic properties.In order to fulfill the above objectives, the design and synthesis of a variety of OPVs with appropriate structural variations were planned. The design principle involves the derivatization of OPVs with weak H-bonding hydroxymethyl end groups and with long aliphatic hydrocarbon side chains. The noncovalent interactions in these molecules were expected to lead the formation of supramolecular assembly and gels in hydrocarbon solvents. In such an event, detailed study of gelation and extensive analysis of the morphology of the gel structures were planned using advanced microscopic techniques. Since OPVs are strongly fluorescent molecules, gelation is expected to perturb the optical properties. Therefore, detailed study on the gelation induced optical properties as a way to probe the nature and stability of the selfassembly was planned. Apart from this, the potential use of the modulation of the optical properties for the purpose of light harvesting was aimed. The approach to this problem was to entrap an appropriate energy trap to the OPV gel matrix which may lead to the efficient energy transfer from the OPV gel based donor to the entrapped acceptor. The final question that we wanted to address in this investigation was the creation of helical nanostructures through proper modification of the OPV backbone With chiral handles.The present thesis is a detailed and systematic approach to the realization of the above objectives which are presented in different chapters of the thesis. en_US
dc.language.iso en en_US
dc.publisher Regional Research Laboratory (CSIR) en_US
dc.subject oligo(p-phenylenevinylene) en_US
dc.subject Supramolecular Materials en_US
dc.subject Organogels en_US
dc.subject π-conjugated oligomers en_US
dc.subject crafting en_US
dc.subject gelation en_US
dc.subject helical nanostructures en_US
dc.subject Chemistry en_US
dc.title Oligo(p-Phenylenevinylene) Derived Organogels: A Novel Class of Functional Supramolecular Materials en_US
dc.type Thesis en_US


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