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A Micro-fabricated Hydrogen Storage Module with Sub-atmospheric Activation and Durability in Air Exposure
Xi Shan1, Joe H Payer, Jesse S Wainright
1Corrosion and Reliability Engineering, Department of Chemical and Biomolecular Engineering University of Akron, Akron OH 44325, USA.
Abstract:
The objective of this work was to develop a hydrogen storage module for onboard electrical power sources suitable for use in micro power systems and micro-electro-mechanical systems (MEMS). Hydrogen storage materials were developed as thin-film inks to be compatible with an integrated manufacturing process. Important design aspects were (a) ready activation at sub-atmospheric hydrogen pressure and room temperature and (b) durability, i.e. capable of hundreds of absorption/desorption cycles and resistance to deactivation on exposure to air. Inks with palladium-treated intermetallic hydrogen storage alloys were developed and are shown here to be compatible with a thin-film micro-fabrication process. These hydrogen storage modules absorb hydrogen readily at atmospheric pressure, and the absorption/desorption rates remained fast even after the ink was exposed to air for 47 weeks.
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