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Featured researches published by Yuki Iijima.


Angewandte Chemie | 2015

True Boundary for the Formation of Homoleptic Transition-Metal Hydride Complexes†

Shigeyuki Takagi; Yuki Iijima; Toyoto Sato; Hiroyuki Saitoh; Kazutaka Ikeda; Toshiya Otomo; Kazutoshi Miwa; Tamio Ikeshoji; K. Aoki; Shin-ichi Orimo

Despite many exploratory studies over the past several decades, the presently known transition metals that form homoleptic transition-metal hydride complexes are limited to the Groups 7-12. Here we present evidence for the formation of Mg3 CrH8 , containing the first Group 6 hydride complex [CrH7 ](5-) . Our theoretical calculations reveal that pentagonal-bipyramidal H coordination allows the formation of σ-bonds between H and Cr. The results are strongly supported by neutron diffraction and IR spectroscopic measurements. Given that the Group 3-5 elements favor ionic/metallic bonding with H, along with the current results, the true boundary for the formation of homoleptic transition-metal hydride complexes should be between Group 5 and 6. As the H coordination number generally tends to increase with decreasing atomic number of transition metals, the revised boundary suggests high potential for further discovery of hydrogen-rich materials that are of both technological and fundamental interest.


APL Materials | 2014

Li4FeH6: Iron-containing complex hydride with high gravimetric hydrogen density

Hiroyuki Saitoh; Shigeyuki Takagi; Motoaki Matsuo; Yuki Iijima; Naruki Endo; Katsutoshi Aoki; Shin-ichi Orimo

Li4FeH6, which has the highest gravimetric hydrogen density of iron-containing complex hydrides reported so far, is synthesized by hydrogenation of a powder mixture of iron and LiH above 6.1 GPa at 900 °C. In situ synchrotron radiation X-ray diffraction measurements reveal that while kinetics require high temperature and thus high pressure for the synthesis, Li4FeH6 is expected to be thermodynamically stable slightly below room temperature at ambient pressure; further synthetic studies to suppress the kinetic effects may enable us to synthesize Li4FeH6 at moderate pressures. Li4FeH6 can be recovered at ambient conditions where Li4FeH6 is metastable.


Scientific Reports | 2017

Formation of novel transition metal hydride complexes with ninefold hydrogen coordination

Shigeyuki Takagi; Yuki Iijima; Toyoto Sato; Hiroyuki Saitoh; Kazutaka Ikeda; Toshiya Otomo; Kazutoshi Miwa; Tamio Ikeshoji; Shin-ichi Orimo

Ninefold coordination of hydrogen is very rare, and has been observed in two different hydride complexes comprising rhenium and technetium. Herein, based on a theoretical/experimental approach, we present evidence for the formation of ninefold H- coordination hydride complexes of molybdenum ([MoH9]3−), tungsten ([WH9]3−), niobium ([NbH9]4−) and tantalum ([TaH9]4−) in novel complex transition-metal hydrides, Li5MoH11, Li5WH11, Li6NbH11 and Li6TaH11, respectively. All of the synthesized materials are insulated with band gaps of approximately 4 eV, but contain a sufficient amount of hydrogen to cause the H 1s-derived states to reach the Fermi level. Such hydrogen-rich materials might be of interest for high-critical-temperature superconductivity if the gaps close under compression. Furthermore, the hydride complexes exhibit significant rotational motions associated with anharmonic librations at room temperature, which are often discussed in relation to the translational diffusion of cations in alkali-metal dodecahydro-closo-dodecaborates and strongly point to the emergence of a fast lithium conduction even at room temperature.


Journal of Physical Chemistry C | 2011

Outermost Surface Structures and Oxygen Reduction Reaction Activities of Co/Pt(111) Bimetallic Systems Fabricated Using Molecular Beam Epitaxy

Toshimasa Wadayama; Hirosato Yoshida; Koichiro Ogawa; Naoto Todoroki; Yoshinori Yamada; Kanji Miyamoto; Yuki Iijima; Tatsuya Sugawara; Kazuki Arihara; Seiho Sugawara; Kazuhiko Shinohara


Surface Science | 2013

Oxygen reduction reaction activities for Pt-enriched Co/Pt(111), Co/Pt(100), and Co/Pt(110) model catalyst surfaces prepared by molecular beam epitaxy

Yoshinori Yamada; Kanji Miyamoto; Takehiro Hayashi; Yuki Iijima; Naoto Todoroki; Toshimasa Wadayama


Journal of The Electrochemical Society | 2013

Structure and Electrochemical Stability of Pt-Enriched Ni/Pt(111) Topmost Surface Prepared by Molecular Beam Epitaxy

Naoto Todoroki; Yuki Iijima; Ryota Takahashi; Yu Asakimori; Toshimasa Wadayama


Journal of The Electrochemical Society | 2013

Oxygen Reduction Reaction Activities for Pt/Au(hkl) Bimetallic Surfaces Prepared by Molecular Beam Epitaxy

Yuki Iijima; Takayuki Kondo; Yu Takahashi; Yohe Bando; Naoto Todoroki; Toshimasa Wadayama


Journal of Electroanalytical Chemistry | 2012

Oxygen reduction reaction activities of Pt/Au(1 1 1) surfaces prepared by molecular beam epitaxy

Yuki Iijima; Yu Takahashi; Ken-ichi Matsumoto; Takehiro Hayashi; Naoto Todoroki; Toshimasa Wadayama


Materials Transactions | 2013

Platinum-Enriched Ni/Pt(111) Surfaces Prepared by Molecular Beam Epitaxy: Oxygen Reduction Reaction Activity and Stability

Naoto Todoroki; Ryota Takahashi; Yuki Iijima; Yoshinori Yamada; Takehiro Hayashi; Toshimasa Wadayama


Journal of Physical Chemistry C | 2013

STM and STS Studies on the Density of States Modulation of Pr@C82 and Sc3C2@C80 Binary-Metallofullerene Peapods

Yuki Iijima; Kazunori Ohashi; Naoki Imazu; Ryo Kitaura; Ken Kanazawa; Atsushi Taninaka; Osamu Takeuchi; Hidemi Shigekawa; Hisanori Shinohara

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Hiroyuki Saitoh

Japan Atomic Energy Agency

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