Taguchi Kohei, Shinozaki Kazuteru, Okumura Hideyuki, Michioka Chishiro, Yoshimura Kazuyoshi, Ishihara Keiichi N
Department of Material Science, Graduate School of Nanobioscience, Yokohama City University, 22-2 Seto, Yokohama, 236-0027, Japan.
Department of Socio-Environmental Energy Science, Graduate School of Energy Science, Kyoto University, Yoshidahonmachi, Sakyo-ku, Kyoto, 606-8501, Japan.
Sci Rep. 2020 Apr 10;10(1):6199. doi: 10.1038/s41598-020-63124-2.
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.
在常规水相还原沉淀过程中,首次通过采用新型“静态反应”在环境条件下合成了新型非晶态氢化铁(AIHs),该过程中不搅拌混合溶液。AIHs的种类和形态取决于加工条件,发现了两种类型,一种由缠结的均匀纳米线组成,另一种本质上是颗粒状。两种AIHs在600°C热处理时都会转变为结晶α-Fe。纳米线AIH的氢含量为0.10 wt%,而颗粒状AIH的氢含量为0.22 wt%。它们的磁性和热性能因此不同,非扩散氢有助于AIHs的稳定性。强烈表明,通过使用静态反应,铁氢簇在沉淀反应的早期形成并保留,随后聚集成新型AIHs,防止α-Fe结晶。因此,AIHs将被归类为用铁氢簇稳定的亚稳氢化物。此外,在水溶液中新发现的静态反应产生了前所未有的AIHs,为基本和重要的水相反应提供了新的思路。