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Hydrogenation Effect on Interlayer Coupling and Magneto-Transport Properties of Pd/Co/Mg/Fe Multilayers.

Li-Jie LiawZi-Qi LiuPo-Wei ChenShi-Yu LiuAlltrin DhanarajagopalFang-Yuh LoJhen-Yong HongWen-Chin Lin
Published in: ACS omega (2023)
Hydrogenation-induced modification of magnetic properties has been widely studied. A Mg spacer layer with high hydrogen storage stability was clamped in a Pd/Co/Mg/Fe multilayer structure to enhance its hydrogen storage stability and explore the structure's magneto-transport properties. After 1 bar hydrogen exposure, the formation of a stable MgH 2 phase was demonstrated in an ambient environment at room temperature through X-ray diffraction. Lower magnetic coupling and enhanced magnetoresistance, compared to those of the as-grown sample, were observed using the longitudinal magneto-optical Kerr effect and a four-probe measurement. In this study, the hydrogenation stability of ferromagnetic multilayers was improved, and the concept of a hydrogenation-based spintronic device was developed.
Keyphrases
  • room temperature
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  • computed tomography
  • cross sectional
  • high speed
  • electron microscopy
  • tandem mass spectrometry
  • dual energy