Role of Chain Microstructure and Branching on Solution and Thin Film Phase Behavior

Abstract

This study has focused on elucidating links between topological design of block copolymers and chain stiffness, their assembly in solutionand organization in thin films. Novel aspects include the ability to tune chain rigidity without altering chemical composition and precision control of copolymer architecture. Although difficulties in polymer synthesis persisted throughout the project, the phase behavior of topologically complex and semiflexible block copolymers have been examined in solution and thin. Outcomes from those studies providekey insights into how topological and microstructural variations affect assembly and properties. In addition, studies of the solution phase behavior of highly branched star-like copolymers revealed a new and unusual phase segregated morphology, which was linked to the unusual solution assembly behavior of those topologically-constrained stars. Finally, the synthesis of a new class of polymers based on benzofulvene monomer was advanced, a variety of additives were tested for their ability to impart microstructural control, and impacts on macromolecular and thermomechanical properties investigated.

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Document Details

Document Type
Technical Report
Publication Date
Nov 30, 2015
Accession Number
AD1006972

Entities

People

  • Jimmy W. Mays
  • S. Ii M. Kilbey

Organizations

  • University of Tennessee system

Tags

Communities of Interest

  • Advanced Electronics

DTIC Thesaurus Topics

  • Biomedical And Dental Materials
  • Block Copolymers
  • Branched Copolymers
  • Chemistry
  • Copolymers
  • Electron Microscopy
  • Engineering
  • Films
  • Macromolecules
  • Materials
  • Materials Engineering
  • Polymer Chemistry
  • Polymeric Films
  • Polymers
  • Self Assembly
  • Students
  • Thin Films

Readers

  • Nanoscale Plasmonic Nanotechnology
  • Reinforced Composite Materials
  • Thin Film Deposition Science.

Technology Areas

  • Microelectronics
  • Microelectronics - Graphene