Effect of branching on rod-coil polyimides as membrane materials for lithium polymer batteries

This paper describes a series of rod-coil block co-polymers that produce easy to fabricate, dimensionally stable films with good ionic conductivity down to room temperature for use as electrolytes for lithium polymer batteries. The polymers consist of short, rigid rod polyimide segments, alternating...

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Veröffentlicht in:Scientific and technical aerospace reports 2003-04, Vol.41 (8)
Hauptverfasser: Meador, Mary Ann B, Cubon, Valerie A, Scheiman, Daniel A, Bennett, William R
Format: Artikel
Sprache:eng
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Zusammenfassung:This paper describes a series of rod-coil block co-polymers that produce easy to fabricate, dimensionally stable films with good ionic conductivity down to room temperature for use as electrolytes for lithium polymer batteries. The polymers consist of short, rigid rod polyimide segments, alternating with flexible, polyalkylene oxide coil segments. The highly incompatible rods and coils should phase separate, especially in the presence of lithium ions. The coil phase would allow for conduction of lithium ions, while the rigid rod phase would provide a high degree of dimensional stability. An optimization study was carried out to study the effect of four variables (degree of branching, formulated molecular weight, polymerization solvent and lithium salt concentration) on ionic conductivity, glass transition temperature and dimensional stability in this system.
ISSN:1548-8837