Russian Technologies and Nanostructural Materials in High Specific Power Systems Based on Hydrogen–Air Fuel Cells with an Open Cathode

被引:0
|
作者
S. I. Nefedkin
V. E. Guterman
A. A. Alekseenko
S. V. Belenov
A. V. Ivanenko
M. A. Klimova
V. I. Pavlov
S. V. Panov
K. O. Paperzh
S. V. Shubenkov
机构
[1] BMPower company (participant of the Skolkovo project),
[2] Prometheus R&D LLC (participant of the Skolkovo project),undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
引用
收藏
页码:370 / 378
页数:8
相关论文
共 30 条
  • [21] 2 W power source based on air-hydrogen polymer electrolyte membrane fuel cells and water-aluminum hydrogen micro-generator
    Shkolnikov, Eugene
    Vlaskin, Mikhail
    Iljukhin, Alexey
    Zhuk, Andrey
    Sheindlin, Alexander
    [J]. JOURNAL OF POWER SOURCES, 2008, 185 (02) : 967 - 972
  • [22] Direct power to hydrogen to power based on solid oxide cells with a high-performance Sr-Ba free air electrode
    Zhang, Panpan
    Chang, Jieshan
    Wu, Yujie
    Jing, Junmeng
    Wang, Haoran
    Zheng, Ziwei
    Chen, Liyan
    Li, Jiaheng
    Yang, Zhibin
    [J]. FUEL, 2024, 363
  • [23] Innovative Energy Storage for Off-Grid RES-Based Power Systems: Integration of Flywheels with Hydrogen Utilization in Fuel Cells
    Prodromidis, G. N.
    Coutelieris, F. A.
    [J]. JOURNAL OF ENERGY ENGINEERING, 2014, 140 (04)
  • [24] Barium- and Strontium-Containing Anode Materials toward Ceria-Based Solid Oxide Fuel Cells with High Open Circuit Voltages
    Gong, Zheng
    Sun, Wenping
    Jin, Zongzi
    Miao, Lina
    Liu, Wei
    [J]. ACS APPLIED ENERGY MATERIALS, 2018, 1 (07): : 3521 - 3528
  • [25] SSH2S: Hydrogen storage in complex hydrides for an auxiliary power unit based on high temperature proton exchange membrane fuel cells
    Baricco, Marcello
    Bang, Mads
    Fichtner, Maximilian
    Hauback, Bjorn
    Linder, Marc
    Luetto, Carlo
    Moretto, Pietro
    Sgroi, Mauro
    [J]. JOURNAL OF POWER SOURCES, 2017, 342 : 853 - 860
  • [26] Optimization of Ionomer for High-Performance Self-Humidifying Air-Breathing Proton-Exchange Membrane Fuel Cells in Portable Device Power Systems
    Kim, Junho
    Choi, Hee Ji
    Choi, Hyukjae
    Kang, Sun Young
    Choi, Hosung
    Ahn, Chi-Yeong
    Kim, Yunho
    La, Ilchai
    Kim, Ok-Hee
    Cho, Yong-Hun
    Sung, Yung-Eun
    [J]. ENERGY TECHNOLOGY, 2024,
  • [28] Nano-flower like CoFe-layered double hydroxide@reduced graphene oxide with efficient oxygen reduction reaction for high-power air-cathode microbial fuel cells
    Long, Peng
    Qin, Mengmeng
    Zhang, Baocai
    Liu, Qijing
    Zhao, Fulai
    Wu, Zijie
    Ni, Zhengyang
    Yu, Huitao
    Li, Feng
    Song, Hao
    Feng, Yiyu
    Feng, Wei
    [J]. CARBON, 2023, 212
  • [29] Literature Review of Energy Management in Combined Heat and Power Systems Based on High-Temperature Proton Exchange Membrane Fuel Cells for Residential Comfort Applications
    Sanz i Lopez, Victor
    Costa-Castello, Ramon
    Batlle, Carles
    [J]. ENERGIES, 2022, 15 (17)
  • [30] Corrigendum to One-pot fabrication of high-entropy heterostructure cathode materials with excellent anti-poisoning properties in solid oxide fuel cells [J. Power Sources 626 (15) 235809 (2025)]
    Liu, Daofu
    Chen, Zhengpeng
    Zhang, Wenjing
    Sun, Mengyuan
    Jin, Fangjun
    Liu, Hongmin
    Ou, Xuemei
    Zheng, Kun
    Ling, Yihan
    [J]. Journal of Power Sources, 2025, 629