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Cerium-Based Perovskite Mixed Metal Oxide as the Radical Scavenger for PEM Fuel Cells Operating under Low Humidity Conditions

Title
Cerium-Based Perovskite Mixed Metal Oxide as the Radical Scavenger for PEM Fuel Cells Operating under Low Humidity Conditions
Author(s)
Oh, HyunsikSon, ByungrakShanmugam, Sangaraju
Issued Date
2023-06
Citation
ACS Applied Materials & Interfaces, v.15, no.23, pp.28093 - 28105
Type
Article
Author Keywords
multi-metal oxideradical scavengerlow relativehumidityCeO2polymer electrolyte membrane fuel cellperovskite
Keywords
CE 3D XPSCOMPOSITE MEMBRANESNANOCOMPOSITE MEMBRANESPERFORMANCETEMPERATURE
ISSN
1944-8244
Abstract
When the polymer electrolyte membrane fuel cell (PEMFC) is operated under low humidity, the proton conductivity decreases due to membrane dehydration, causing adverse effects on fuel cell performance. Introducing appropriate additives to the membrane and catalyst layer to prevent membrane degradation at low humidity brings significant performance improvements to proton exchange membrane fuel cells. We developed a perovskite-structured multi-metal oxide Ce0.667Zr0.05Ti0.95O3-δ (CZTO) with high radical scavenging properties and good structural stability. The nanostructured ceramic CZTO is introduced into the membrane and cathode catalyst layer to improve the durability of the membrane electrode assembly. The Nafion-CZTO membrane exhibited maximum power densities of 1298 and 519 mW cm-2 at 100 and 20% relative humidity, respectively. The improved performance of Nafion-CZTO membranes over commercial Nafion membranes is due to the high proton conductivity and better radical scavenging properties of the CZTO additive. In addition, the expected positive effects of applying CZTO additives to the catalyst layer are verified by low charge transfer resistance and high electrochemical surface activity of the CZTO catalyst through electrochemical impedance spectroscopy and electrochemical surface area analyses. © 2023 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/46557
DOI
10.1021/acsami.3c04216
Publisher
American Chemical Society
Related Researcher
  • 손병락 Son, Byungrak 에너지환경연구부
  • Research Interests 연료전지; Fuel Cell; 하이브리드 전원; Hybrid Power; 스택; Stack; 촉매; Catalyst; 연료전지시스템; Fuel Cell System;센서네트워크;Sensor Network
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Department of Energy Science and Engineering Advanced Energy Materials Laboratory 1. Journal Articles

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