质子交换膜燃料电池
纳米孔
材料科学
阳极
多物理
碳纳米管
扩散
色散(光学)
化学工程
耐久性
气体扩散
纳米技术
复合材料
燃料电池
电极
热力学
化学
物理
光学
物理化学
有限元法
工程类
作者
Obeen Kwon,Seonghyeon Yang,Byung‐Ho Kang,Junghyun Park,Gyu-Tae Park,Jong-Hyeok Baek,Han-Jun Oh,Yoonho So,Sung Hoon Park,Youngjin Jeong,Taehyun Park
标识
DOI:10.1002/adfm.202309865
摘要
Abstract Given environmental friendliness, high‐temperature proton exchange membrane fuel cells (HT‐PEMFCs) can be the alternative power source for clean power generation. However, neither developments nor strategies of diffusion media are actively conducted yet to achieve high‐performance HT‐PEMFCs. Herein, a nanoporous carbon nanotube (CNT) sheet, a new anode diffusion layer between the gas diffusion layer|bipolar plate interface that improves fuel cell performance and durability by CNT purification for facilitating fuel accessibility with uniform interfacial contact for reducing acid loss, is reported. Configuration of the optimal CNT‐inserted fuel cell is examined and proposed under the operating temperature of 140–200 °C. The underlying mechanism of this new diffusion layer with multiphysics simulation elucidates that the nanoporous nature induces gas‐wall collision, enabling uniform dispersion within adjacent diffusion media. These fuel cells outperform performance over two times higher and have a voltage decay rate nearly two times lower than conventional HT‐PEMFC.
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