氢化物
氢
氢化钛
钛
氢同位素
同位素
外延
材料科学
化学
纳米技术
冶金
物理
核物理学
有机化学
图层(电子)
作者
T. Ozawa,Yuka Sugisawa,Yuya Komatsu,Ryota Shimizu,Taro Hitosugi,Daiichiro Sekiba,Kunihiko Yamauchi,Ikutaro Hamada,Katsuyuki Fukutani
标识
DOI:10.1038/s41467-024-53838-6
摘要
Hydrogen, the smallest and lightest element, readily permeates a variety of materials and modulates their physical properties. Identification of the hydrogen lattice location and its amount in crystals is key to understanding and controlling the hydrogen-induced properties. Combining nuclear reaction analysis (NRA) with the ion channeling technique, we experimentally determined the locations of H and D in epitaxial nanofilms of titanium hydrides from the analysis of the two-dimensional angular mappings of NRA yields. Here we show that 11 at% of H are located at the octahedral site with the remaining H atoms in the tetrahedral site. Density functional theory calculations revealed that the structures with the partial octahedral site occupation are stabilized by the Fermi level shift and Jahn-Teller effect induced by hydrogen. In contrast, D was found to solely occupy the tetrahedral site owing to the mass effect on the zero-point vibrational energy. These findings suggest that site occupation of hydrogen can be controlled by changing the isotope mixture ratio, which leads to promising manifestation of novel hydrogen-related phenomena. The lattice location of hydrogen in titanium hydride nanofilms was identified by the channeling 15N-NRA mapping. H and D occupy the tetrahedral and octahedral sites differently because of the hydrogen Jahn-Teller effect and nuclear quantum effect.
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