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The dependence of performance degradation of membrane electrode assembly on platinum loading in polymer electrolyte membrane fuel cell
Authors:Yong-Hun Cho  Ju Wan Lim  Yun Sik Kang  Yoon-Hwan Cho  Ok-Hee Kim  Nak-Hyun Kwon  Oh Joong Kwon  Won-Sub Yoon  Heeman Choe  Yung-Eun Sung
Affiliation:1. School of Advanced Materials Engineering, Kookmin University, 861-1 Jeongneung-dong, Seongbuk-gu, Seoul 136-702, Republic of Korea;2. World Class University (WCU) Program of Chemical Convergence for Energy & Environment (C2E2), School of Chemical and Biological Engineering, College of Engineering, Seoul National University (SNU), Seoul 151-744, Republic of Korea;3. Fuel Cell Vehicle Team 3, Advanced Technology Center, Corporate Research and Development Division, Hyundai-Kia Motors, Yongin-si, Gyeonggi-do 446-912, Republic of Korea;4. Department of Energy and Chemical Engineering, University of Incheon, Incheon 406-772, Republic of Korea;5. Department of Energy Science, Sungkyunkwan University, Suwon 440-746, Republic of Korea
Abstract:The durability of membrane electrode assemblies (MEAs) with varying amounts of Pt loading on the cathode of polymer electrolyte membrane fuel cells was investigated using load cycling as an accelerated degradation test (ADT). The single-cell performance of the MEA as determined by the ADT declined by approximately 34, 48, and 78%, when cathode Pt loading in the MEA was reduced to 0.3, 0.2, and 0.1 mg cm−2, respectively. The increase in MEA performance declined at higher cathode Pt loading conditions, and the degradation rate of MEA performance was also diminished. To characterize the electrochemical and structural properties of the MEAs, cyclic voltammograms, electrochemical impedance spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy, and field-emission scanning electron microscopy were utilized before and after ADT.
Keywords:Polymer electrolyte membrane fuel cell   Pt loading   Accelerated degradation test   Membrane electrode assembly
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