Insights into Oxygen Mass Transport Mechanisms in High-Temperature Proton Exchange Membrane Fuel Cells with Microelectrode

Author:

Chen Sifan,Niu Jianchun,Zhang Shuomeng,Ma Zhuang,Zhang Qinghua,Chen Shiyuan,Wu Liang,Zhang Jialin,Wang Miao,Lu ShanfuORCID,He QinggangORCID

Abstract

The mass transport of oxygen in the cathode catalyst layer of high-temperature proton exchange membrane fuel cells (HT-PEMFCs) has a great impact on cell performance. However, some bulk average methods are unable to study the permeation properties of oxygen near the triple phase boundary of HT-PEMFCs due to the size mismatch. Here, we develop a microelectrode integrated system to quantitatively study the O2 mass transport behavior at the Pt/binder interface under actual operating temperatures (100 °C–180 °C). The oxygen diffusion coefficients and solubility obtain from potential-step chronoamperometry and a modified Cottrell equation follow the diffusion “ball-cage” model and the dual-mode solubility model. Subsequently, molecular dynamics simulations are used to describe the key structural elements and diffusion behavior of oxygen molecules from the microscopic perspective. These results provide a scientific approach to study the mass transfer process of oxygen at the local environment, endowing with insightful strategies for future improvement and applications of HT-PEMFCs.

Funder

China Southern Power Grid

National Natural Science Foundation of China

Publisher

The Electrochemical Society

Subject

Materials Chemistry,Electrochemistry,Surfaces, Coatings and Films,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

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