Faculty of Science

稲熊 宜之

イナグマ ヨシユキ  (Yoshiyuki Inaguma)

基本情報

所属
学習院大学 理学部 化学科 教授
学位
博士(工学)(東京工業大学)

J-GLOBAL ID
200901013786812316
researchmap会員ID
1000015689

外部リンク

研究キーワード

 2

論文

 196
  • Yoshiyuki Inaguma, Shintaro Kobayashi, Tetsuhiro Katsumata, Shogo Kawaguchi
    Journal of Fluorine Chemistry 278 110334-110334 2024年8月  
  • Tatsuya Yamaguchi, Mizuki Furo, Yuki Sakai, Takumi Nishikubo, Hajime Hojo, Masaki Azuma, Kengo Oka, Daisuke Mori, Yoshiyuki Inaguma, Masaichiro Mizumaki, Kento Yamamoto, Jan Kuneš, Takashi Mizokawa, Atsushi Hariki
    Physical Review B 109(20) 2024年5月15日  査読有り
  • Tetsuhiro Katsumata, Ryo Suzuki, Naoto Satoh, Ryoya Oda, Shingo Motoyama, Shunpei Suzuki, Mamoru Nakashima, Yoshiyuki Inaguma, Daisuke Mori, Akihisa Aimi, Yasuhiro Yoneda, Yue Jin Shan
    Chemistry of Materials 36(8) 3697-3704 2024年4月23日  査読有り
  • Ayako Yamamoto, Kimitoshi Murase, Takeru Sato, Kazumasa Sugiyama, Toru Kawamata, Yoshiyuki Inaguma, Jun-Ichi Yamaura, Kazuki Shitara, Rie Yokoi, Hiroki Moriwake
    Dalton transactions (Cambridge, England : 2003) 53(16) 7044-7052 2024年4月23日  査読有り
    We synthesized a perovskite-type RbNbO3 at 1173 K and 4 GPa from non-perovskite RbNbO3 and investigated its crystal structure and properties towards ferroelectric material design. Single-crystal X-ray diffraction analysis revealed an orthorhombic cell in the perovskite-type structure (space group Amm2, no. 38) with a = 3.9937(2) Å, b = 5.8217(3) Å, and c = 5.8647(2) Å. This non-centrosymmetric space group is the same as the ferroelectric BaTiO3 and KNbO3 but with enhanced distortion. Structural transition from orthorhombic to two successive tetragonal phases (Tetra1 at 493 K, Tetra2 at 573 K) was observed, maintaining the perovskite framework before reverting to the triclinic ambient phase at 693 K, with no structural changes between 4 and 300 K. The first transition is similar to that of KNbO3, whereas the second to Tetra2, marked by c-axis elongation and a significant cp/ap ratio jump (from 1.07 to 1.43), is unique. This distortion suggests a transition similar to that of PbVO3, where an octahedron's oxygen separates along the c-axis, forming a pyramid. Ab initio calculations simulating negative pressure like thermal expansion predicted this phase transition (cp/ap = 1.47 at -1.2 GPa), aligning with experimental findings. Thermal analysis revealed two endothermic peaks, with the second transition entailing a greater enthalpy change and volume alteration. Strong second harmonic generation signals were observed across Ortho, Tetra1, and Tetra2 phases, similar to BaTiO3 and KNbO3. Permittivity increased during the first transition, although the second transition's effects were limited by thermal expansion-induced bulk sample collapse. Perovskite-type RbNbO3 emerges as a promising ferroelectric material.
  • Hiroshi Kojitani, Mei Gonai, Yoshiyuki Inaguma, Masaki Akaogi
    Physics and Chemistry of Minerals 51(1) 2024年2月9日  査読有り

MISC

 128

講演・口頭発表等

 293

共同研究・競争的資金等の研究課題

 24