Discovery of Amorphous Iron Hydrides via Novel Quiescent Reaction in Aqueous Solution

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作者
Kohei Taguchi
Kazuteru Shinozaki
Hideyuki Okumura
Chishiro Michioka
Kazuyoshi Yoshimura
Keiichi N. Ishihara
机构
[1] Department of Material Science,
[2] Graduate School of Nanobioscience,undefined
[3] Yokohama City University,undefined
[4] 22-2 Seto,undefined
[5] Department of Socio-Environmental Energy Science,undefined
[6] Graduate School of Energy Science,undefined
[7] Kyoto University,undefined
[8] Yoshidahonmachi,undefined
[9] Sakyo-ku,undefined
[10] Department of Chemistry,undefined
[11] Graduate School of Science,undefined
[12] Kyoto University,undefined
[13] Kitashirakawa Oiwake-cho,undefined
[14] Sakyo-ku,undefined
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摘要
Novel amorphous iron hydrides (AIHs) are synthesized for the first time under ambient conditions by employing novel “quiescent reaction”, without stirring for mixing solutions, during a conventional aqueous reduction-precipitation process. The kind and morphology of AIHs are dependent on the processing condition, where two types are found, with one form consisting of a tangle of uniform nanowires and the other being granular in nature. Both AIHs undergo transformation to crystalline α-Fe by heat treatment at 600 °C. The nanowire AIH exhibits the hydrogen content of 0.10 wt%, while the granular AIH of 0.22 wt%. Their magnetic and thermal properties are accordingly different, and the non-diffusive hydrogen contributes to stability of AIHs. It is strongly suggested that, by use of quiescent reaction, iron-hydrogen clusters are formed and preserved at an early stage of precipitation reaction, and subsequently aggregated into novel AIHs, preventing α-Fe crystallization. Hence, the AIHs would be categorized as metastable hydrides stabilized with iron-hydrogen clusters. In addition, newly discovered quiescent reaction in aqueous solution, from which unprecedented AIHs are derived, sheds new light on fundamental and essential aqueous reaction.
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