SEM and TEM Characterization of Magnesium Hydride Catalyzed with Ni Nano-Particle or Nb2O5
Journal of Alloys and Compounds 450 巻 1-2 号
395-399 頁
2008-02 発行
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JAlloyComp_450_395.pdf
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タイトル ( eng ) |
SEM and TEM Characterization of Magnesium Hydride Catalyzed with Ni Nano-Particle or Nb2O5
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作成者 |
Hanada Nobuko
Enoki Hirotoshi
Akiba Etsuo
Fujii Hironobu
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収録物名 |
Journal of Alloys and Compounds
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巻 | 450 |
号 | 1-2 |
開始ページ | 395 |
終了ページ | 399 |
抄録 |
The microstructures of MgH2 catalyzed with Ni nano-particle or Nb2O5 mesoporous powders are examined by scanning electron microscopy (SEM) and transmission electron microscopy (TEM) observations. For MgH2 catalyzed with Ni, the Ni particles with the diameter smaller than 1 μm were detected on the MgH2 particles with the diameter smaller than 5 μm by the back scattering electron (BSE) microscopy. In details, the TEM micrograph indicates that the Ni particles distribute ~20 nm in diameter on MgH2 uniformly, which was the same size as the additive doped in MgH2 before milling. On the other hand, for MgH2 catalyzed with Nb2O5, the additive particles could not be found anywhere in the BSE image. Even in the TEM micrograph by much larger magnification than the SEM micrograph, the particles corresponding to the additive can not be observed at all. Furthermore, an energy dispersive X-ray (EDX) analysis in spots with a diameter of 20 nm indicated that the existing ratio of Mg to Nb was evaluated to 98:2, being the same as the starting ratio before milling. Therefore, the metal oxide Nb2O5 becomes extremely small particle that could not be observed by the present work after milling compared to metal Ninano.
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著者キーワード |
hydrogen absorbing materials
ball-milling
microstructure
scanning electron microscopy
SEM
transmission electron microscopy
TEM
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NDC分類 |
物理学 [ 420 ]
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言語 |
英語
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資源タイプ | 学術雑誌論文 |
出版者 |
Elsevier B.V.
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発行日 | 2008-02 |
権利情報 |
Copyright (c) 2006 Elsevier B.V.
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出版タイプ | Author’s Original(十分な品質であるとして、著者から正式な査読に提出される版) |
アクセス権 | オープンアクセス |
収録物識別子 |
[NCID] AA10817249
[ISSN] 0925-8388
[DOI] 10.1016/j.jallcom.2006.10.128
[DOI] http://doi.org/10.1016/j.jallcom.2006.10.128
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