Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7726106 | Journal of Power Sources | 2018 | 9 Pages |
Abstract
The factors influenced on degradation of direct hydrazine hydrate fuel cells (DHFCs) under operation conditions are analyzed by in situ soft X-ray radiography. A durability of DHFCs is significantly improved by multi-step reaction DHFCs (MSR-DHFCs) approach designed to decrease the crossover of liquid fuel. An open circuit voltage (OCV) as well as cell voltage at 5 mA cmâ2 of MSR-DHFC construct with commercial anion exchange membrane (AEM) maintained for over of 3500 h at 60 °C. Furthermore, the commercial proton exchange membrane (PEM) is integrated into AEM of MSR-DHFCs resulting in stable power output of MSR-DHFCs for over than 2800 h at 80 °C.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
Tomokazu Sakamoto, Alexey Serov, Teruyuki Masuda, Masaki Kamakura, Koji Yoshimoto, Takuya Omata, Hirofumi Kishi, Susumu Yamaguchi, Akihiro Hori, Yousuke Horiuchi, Tomoaki Terada, Kateryna Artyushkova, Plamen Atanassov, Hirohisa Tanaka,