Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Peter Po-jen Chu"'
Publikováno v:
AIP Conference Proceedings.
Approaches to improve membrane ion conductivity usually leads to higher degree of swelling, more serious fuel cross-over and often sacrificed membrane mechanical strength. Preserving all three main membrane properties is a tough challenge in searchin
Publikováno v:
ECS Meeting Abstracts. :1575-1575
A new category of hydroxide ion exchange membrane bearing ordered interpenetrating network (semi-IPN) structure established by electric field poling during membrane formation, lead to balanced property where high ion conductivity and low alcohol (met
Publikováno v:
ECS Meeting Abstracts. :28-28
Silicon Anode is considered a most critical component for advanced lithium battery since it has about 10 folds higher theoretical capacity than that of conventional graphite anode. However, Si suffers from huge volume change during lithiation/ delith
Publikováno v:
ECS Meeting Abstracts. :574-574
Electric field induces temporary polarization on molecular segment. In polymer solution or polymer melt, applying electric field induces self assembly that cannot be established otherwise. This preferentially ordered morphology is preserved after dry
Autor:
Alice Yi-han Chang, Peter Po-jen Chu
Publikováno v:
ECS Meeting Abstracts. :121-121
Lithium-ion battery holds great promises for future energy storage purpose. However, traditional Lithium-ion battery uses liquid organic electrolytes which is flammable and leads to safety problems. In this work, we present a highly ion conducting me
Autor:
Yu-shin Fang, Peter Po-jen Chu
Publikováno v:
ECS Meeting Abstracts. :149-149
Traditional fuel cell membrane suffers from fuel cross over and high degree of swelling after extensive operation. To circumvent these deficiencies, we disclose in this study proton conducting membrane by incorporating poly(ether sulfones)(PES) with
Autor:
Max Yu-hao Chang, Peter Po-jen Chu
Publikováno v:
ECS Meeting Abstracts. :517-517
A new type of electrolyte additive, the hyperbranched polyimine derivative (p-BPMI) is prepared from 1,3-dimethyl-barbituric acid (1,3-DBTA), copolymerizing of bismaleamic acyl imide (BMI) and N-phenylmaleimide(PMI). The p-BPMI powder is dissolvable
Publikováno v:
ECS Meeting Abstracts. :163-163
not Available.
Publikováno v:
Langmuir; Dec2011, Vol. 27 Issue 23, p14654-14661, 8p