4.5 Article

Preparation of highly porous heat-resistant polybenzoxazole network films and their electrical conductivities

期刊

POLYMERS FOR ADVANCED TECHNOLOGIES
卷 33, 期 1, 页码 104-110

出版社

WILEY
DOI: 10.1002/pat.5494

关键词

conductivity; heat resistance; phosphoric acid; proton; rigid polymer network

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Highly porous rigid polybenzoxazole (PBO) network films with excellent thermal stability and high conductivity were prepared using a precursor-mediated method. The films with pyridine rings doped with phosphoric acid showed the highest conductivity among the films considered in the study, surpassing that of Nafion(TM) and enabling use at higher temperatures.
Highly porous rigid polybenzoxazole (PBO) network films were prepared using a precursor-mediated fabrication method. The obtained PBO network films possessed high porosities of similar to 40%, as calculated from their apparent densities. In addition, the 5%-weight-loss temperatures of the films were >= 570 degrees C under nitrogen atmosphere, demonstrating an excellent thermal stability. The electrical conductivities of the obtained PBO network films and phosphoric-acid-doped PBO network films were also evaluated. In addition, PBO network films containing pyridine rings were prepared and subjected to phosphoric acid doping. The resultant films were found to exhibit the highest conductivities of the films considered in this study owing to proton conduction both between phosphate groups and between the pyridine rings. The highest conductivity was found for a film prepared from a phosphoric-acid-doped PBO network containing pyridine rings, that is, 2.09 x 10(-1) S/cm at 150 degrees C, which was higher than that of Nafion (TM). Therefore, these films can be used at higher temperatures than that of Nafion (TM).

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