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dc.identifier.urihttp://hdl.handle.net/11401/78376
dc.description.sponsorshipThis work is sponsored by the Stony Brook University Graduate School in compliance with the requirements for completion of degreeen_US
dc.formatMonograph
dc.format.mediumElectronic Resourceen_US
dc.format.mimetypeApplication/PDFen_US
dc.language.isoen_US
dc.typeDissertation
dcterms.abstractPolymer fullerene blends have gathered substantial interest in recent years for their potential technological applications, such as optoelectronics and photovoltaics. The performance of these blends is highly dependent on the properties of the nanoparticle-polymer, the polymer-polymer, and the air polymer interfaces. We first investigated the effect of processing additives on the morphology of active layer in polymer solar cell and improved the efficiency by controlling the interface region between active layer and electrode. In particular, polystyrene (PS) with different molecular weights (MW) are used as processing additives in poly[N-9?-heptadecanyl-2,7-carbazole-alt-5,5-(4?,7?-di-2-thienyl-2?,1?,3?-benzothiadiazole)] (PCDTBT)/ phenyl-C61-butyric acid methyl ester (PCBM) solar cell. The interfacial tension between PCDTBT and PS is increased with the increasing PS Mw, which enhances the segregation of the PS phase to the vacuum surface, where the interfacial area is decreased. The migration of PS to the surface mitigated the aggregation of PCBM in the active layer and thus optimized interface region between active layer and electrode, which led to higher efficiency. Secondly we studied the interfacial interaction between graphene or graphene oxide and poly(methyl methacrylate) (PMMA). The effects of graphene and graphene oxide on the dewetting dynamics of thin polymer films are also investigated. The results indicated that graphene oxide were much more effective than graphene in stabilizing the films against dewetting. The influence of graphene and graphene oxide on the interdiffusion of PMMA films was measured by neutron reflectivity. The diffusion coefficient was unaffected by the presence of graphene but was reduced with graphene, indicating that interactions between the PMMA and graphene were weaker than that between the PMMA and graphene oxide. Finally, eletrospining method is applied to prepare poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV)/ polyvinylpyrrolidone (PVP)/PCBM fibers for solar cell devices. By incorporation the fibers into active layer, multiple donor-acceptor interfaces are created in the fibers and in the backfill layer. Compared with the thin-film counterpart, the short-circuit current density and the fill factor are both enhanced in nanofiber-based systems, which is attributed to the favorable morphology provided by the fibrous network serving as a template for the active layer.
dcterms.available2018-07-09T14:44:26Z
dcterms.contributorRafailovich, Miriam.en_US
dcterms.contributorVenkatesh, Ten_US
dcterms.contributorNam, Chang-Yongen_US
dcterms.contributorLi, Tai-De.en_US
dcterms.creatorYang, Zhenhua
dcterms.dateAccepted2018-07-09T14:44:26Z
dcterms.dateSubmitted2018-07-09T14:44:26Z
dcterms.descriptionDepartment of Materials Science and Engineering.en_US
dcterms.extent98 pg.en_US
dcterms.formatMonograph
dcterms.identifierYang_grad.sunysb_0771E_13449.pdfen_US
dcterms.identifierhttp://hdl.handle.net/11401/78376
dcterms.issued2017-08-01
dcterms.languageen_US
dcterms.provenanceSubmitted by Jason Torre (fjason.torre@stonybrook.edu) on 2018-07-09T14:44:26Z No. of bitstreams: 1 Yang_grad.sunysb_0771E_13449.pdf: 22759857 bytes, checksum: 774ebdcb5c1aee4656a61ac7367c4fce (MD5)en
dcterms.provenanceMade available in DSpace on 2018-07-09T14:44:26Z (GMT). No. of bitstreams: 1 Yang_grad.sunysb_0771E_13449.pdf: 22759857 bytes, checksum: 774ebdcb5c1aee4656a61ac7367c4fce (MD5) Previous issue date: 2017-08-01en
dcterms.subjectElectrospinning
dcterms.subjectMaterials Science
dcterms.subjectChemical engineering
dcterms.subjectgraphene
dcterms.subjectInterfacial tension
dcterms.subjectpolymer solar cell
dcterms.subjectpolymer thin film
dcterms.subjectprocessing additive
dcterms.titleEngineering Interfaces in Polymer/ Fullerene Blends
dcterms.typeDissertation


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