桥接(联网)
电化学储能
材料选择
纳米技术
可持续能源
制作
系统工程
计算机科学
材料科学
化石燃料
燃料电池
电化学能量转换
相容性(地球化学)
电化学
桥(图论)
工艺工程
储能
可持续发展
材料设计
生化工程
机械工程
能量密度
结构材料
高效能源利用
高能
技术开发
设计要素和原则
材料效率
建筑工程
持续性
工程物理
作者
Iesti Hajar Hanapi,S. U. Kamarudin,Siti Hasanah Osman,Norazuwana Shaari,Zulfirdaus Zakaria,Nurul Noramelya Zulkefli
出处
期刊:Energy & Fuels
[American Chemical Society]
日期:2026-01-13
卷期号:40 (4): 1805-1830
被引量:1
标识
DOI:10.1021/acs.energyfuels.5c01836
摘要
Electrochemical systems such as fuel cells, redox flow batteries (RFBs), and electrolyzers have emerged as promising green energy technologies to replace conventional fossil fuel-based sources. Among the critical components in these systems, the bipolar plate (BPP) plays a pivotal role, as its material properties and structural characteristics directly influence overall device performance. Recent years have seen considerable efforts focused on advancing BPP technology to meet the specific demands of various electrochemical applications. However, existing review articles tend to focus on either material development or fabrication techniques within a single electrochemical system, without adequately addressing the broader implications of BPP design across different systems. To bridge this gap, the present review provides a comprehensive overview of the recent progress and persistent challenges in BPP development from a cross-platform perspective, encompassing fuel cells, electrolyzers, and RFB. Particular emphasis is placed on the selection of BPP materials tailored to the specific operational environments of each system. Furthermore, the influence of BPP material characteristics on device performance is critically examined, and potential directions for future research are proposed.
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