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This thesis introduces the preparation of a series of Mg-based thin
films with different structures using magnetron sputtering, as well
as the systematical investigation of their gaseous and
electrochemical hydrogen storage properties under mild conditions.
It reviews promising applications of Mg-based thin films in smart
windows, hydrogen sensors and Ni-MH batteries, while also providing
significant insights into research conducted on Mg-based hydrogen
storage materials, especially the Mg-based films. Moreover, the
unique experimental procedures and methods (including electric
resistance, optical transmittance and electrochemical methods) used
in this thesis will serve as a valuable reference for researchers
in the field of Mg-based hydrogen storage films.
This thesis introduces the preparation of a series of Mg-based thin
films with different structures using magnetron sputtering, as well
as the systematical investigation of their gaseous and
electrochemical hydrogen storage properties under mild conditions.
It reviews promising applications of Mg-based thin films in smart
windows, hydrogen sensors and Ni-MH batteries, while also providing
significant insights into research conducted on Mg-based hydrogen
storage materials, especially the Mg-based films. Moreover, the
unique experimental procedures and methods (including electric
resistance, optical transmittance and electrochemical methods) used
in this thesis will serve as a valuable reference for researchers
in the field of Mg-based hydrogen storage films.
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