Structure–Property Relationships Of: 1) Novel Polyurethane and Polyurea Segmented Copolymers and 2) The Influence of Selected Solution Casting Variables on the Solid State Structure of Synthetic Polypeptide Films Based on Glutamate Chemistry

dc.contributor.authorKlinedinst, Derek Bryanen
dc.contributor.committeechairWilkes, Garth L.en
dc.contributor.committeememberLong, Timothy E.en
dc.contributor.committeememberMoore, Robert Bowenen
dc.contributor.committeememberWhittington, Abby R.en
dc.contributor.departmentMaterials Science and Engineeringen
dc.date.accessioned2014-03-14T20:18:24Zen
dc.date.adate2011-11-21en
dc.date.available2014-03-14T20:18:24Zen
dc.date.issued2011-11-02en
dc.date.rdate2011-11-21en
dc.date.sdate2011-11-10en
dc.description.abstractThe foundational studies of this dissertation concern the characterization of segmented polyurethanes and polyureas synthesized without the use of chain extenders'molecules that are typically used to promote a microphase separated morphology that gives these materials their useful characteristics. Polyurethanes in which a single asymmetric diisocyanate comprising the whole of the hard segment were found to display poor microphase separation. Conversely, polyurethanes in which a single symmetric diisocyanate composed the hard segment were found to display good microphase separation. The more efficient packing of the symmetric hard segments also led to an increase in hard segment connectivity and hence higher values of storage moduli in these systems. When hydroxyl-terminated diisocyanates were replaced with amine-terminated diisocyanates, polyureas were formed. Here too, diisocyanate symmetry was found to play a key role with symmetric diisocyanates leading to better microphase separation. In addition, the polyurea materials displayed broader service temperature windows than their polyurethane counterparts as the relatively stronger bidentate hydrogen bonding replaced monodentate hydrogen bonding in these materials. A thread-like, microphase separated morphology was visually confirmed using atomic force microscopy. Other techniques such as ambient temperature tensile testing, and wide and small angle x-ray scattering were employed to confirm the presence of the microphase separated structure. The investigation into the effects of diisocyanate chemistry and its symmetry was broadened to incorporate non-chain extended polyurethane materials with different soft segment molecular weights, as well as polyurethanes that did contain chain extenders. Once again the effect of using symmetric versus asymmetric diisocyanates was evident in the structure–property behavior of these systems, with symmetric diisocyanates forming materials that displayed better microphase separation and more connectivity of their hard domains. Lastly, in a departure from the segmented copolymer area, a study was conducted into the influence of casting variables on the solid-state structure of synthetic polypeptide films based on glutamate chemistry. The effect of solvent evaporation was determined to play a key role in the morphology of these polypeptide films. Measured small angle light scattering patterns were compared to computer calculated patterns to reveal information about the structure, shape, and length scale of the polypeptide structure.en
dc.description.degreePh. D.en
dc.identifier.otheretd-11102011-095049en
dc.identifier.sourceurlhttp://scholar.lib.vt.edu/theses/available/etd-11102011-095049/en
dc.identifier.urihttp://hdl.handle.net/10919/29527en
dc.publisherVirginia Techen
dc.relation.haspartKlinedinst_DB_D_2011.pdfen
dc.relation.haspartKlinedinst_DB_D_2011_Copyright.pdfen
dc.rightsIn Copyrighten
dc.rights.urihttp://rightsstatements.org/vocab/InC/1.0/en
dc.subjectsegmented copolymeren
dc.subjectmicrophase separationen
dc.subjecthydrogen bondingen
dc.subjectstructure–property behavioren
dc.subjectpolyurethaneen
dc.subjectpolyureaen
dc.subjectatomic force microscopyen
dc.subjectpolypeptideen
dc.subjectglutamateen
dc.titleStructure–Property Relationships Of: 1) Novel Polyurethane and Polyurea Segmented Copolymers and 2) The Influence of Selected Solution Casting Variables on the Solid State Structure of Synthetic Polypeptide Films Based on Glutamate Chemistryen
dc.typeDissertationen
thesis.degree.disciplineMaterials Science and Engineeringen
thesis.degree.grantorVirginia Polytechnic Institute and State Universityen
thesis.degree.leveldoctoralen
thesis.degree.namePh. D.en

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