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Hydrogen Storage Properties of Nanoconfined 4MgH2 - NaAlH4 in graphene<br />

aerogel<br />

Muhammad Dzulizhar bin Mohd Rashid<br />

Supervisor: Dr. Nurul Hayati Binti Idris<br />

Bachelor of Applied Science (Electronics and Instrumentation Physics)<br />

School of Ocean Engineering<br />

Hydrogen fuel cell is considered to replace fossil fuel vehicles in future. However,<br />

storing hydrogen in high-pressure gas or liquid become a major safety issue and poses<br />

a combustion hazard. A possible solution is to store hydrogen in a solid form. Herein,<br />

graphene aerogel nanoconfined hydride material have been shown to improve the<br />

kinetics and reduce the desorption temperature of the hydride materials. Further<br />

research works are is needed to improve the hydrogenation, thermal and cyclic<br />

behavior of the graphene aerogel nanoconfined metal hydrides.<br />

203 | U M T U N D E R G R A D U A T E R E S E A R C H D A Y 2 0 1 9

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