Thermodynamic Effects of Nanotechnological Augmentation of Hydrogen Fuel Cells
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Published:2017-06-05
Issue:
Volume:4
Page:76-86
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ISSN:2205-5231
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Container-title:PAM Review Energy Science & Technology
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language:
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Short-container-title:PAMR
Author:
Woodley Reece CohenORCID,
Yang KaneORCID,
Tanner Geoffrey BruceORCID,
Tran DennisORCID
Abstract
This meta-study focuses on the research regarding the use of nanotechnology in traditional fuel cells in order to increase thermodynamic efficiency through the exploitation of various thermodynamic systems and theories. The use of nanofilters and nano-structured catalysts improve the fuel cell system through the means of filtering molecules from protons and electrons significantly increases the possible output of the fuel cell and the use of nano-platinum catalysts to lower the activation energy of the fuel cell chemical reaction a notable amount resulting in a more efficient system and smaller entropy in comparison to the use of macro sized catalysts.
Publisher
University of Technology, Sydney (UTS)
Subject
General Materials Science
Cited by
1 articles.
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1. Fuel Cell Thermodynamics;Thermodynamics and Energy Engineering;2020-07-29