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Hiroshi Fujihisa

Showing results (1-10 of 38) with videos related to

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Inorganic Chemistry|December 12, 2022
Dense Structure of Yttrium Nitride as a Post-Rock-Salt Phase: High-Pressure Experiments and ComputationsHitoshi Yusa, Hiroshi Fujihisa
Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy|September 9, 2021
Infrared spectra of the β and γ phases of oleic acid under high pressureHiroshi Yamawaki, Hiroshi Fujihisa
Inorganic Chemistry|January 26, 2022
High-Pressure Synthesis of Light Lanthanide Dodecaborides (PrB<sub>12</sub> and CeB<sub>12</sub>): Effects of Valence Fluctuation on Volume and Formation PressureHitoshi Yusa, Fumitoshi Iga, Hiroshi Fujihisa
Physical Review Letters|August 11, 2005
New helical chain structure for scandium at 240 GPaYuichi Akahama, Hiroshi Fujihisa, Haruki Kawamura
Inorganic Chemistry|October 21, 2024
Structural Phase Transitions of Mg<sub>2</sub>NiH<sub>4</sub> Induced by NiH<sub>4</sub> Molecular Ion Distortion and Metal Lattice Deformation under High PressuresTakuma Shiga, Takashi Yagi, Hiroshi Fujihisa
The Journal of Chemical Physics|December 22, 2022
Influence of pressure-induced formation of dihydrogen bonds on lattice parameters, volume, and vibrational modes of ammonia boraneSatoshi Nakano, Hiroshi Fujihisa, Hiroshi Yamawaki, et al.
The Journal of Physical Chemistry. B|August 2, 2014
Structure of intermediate phase II of LiNH2 under high pressureHiroshi Yamawaki, Hiroshi Fujihisa, Yoshito Gotoh, et al.
The Journal of Physical Chemistry Letters|February 13, 2023
Thermally Induced Phase Transition of Cubic Structure II Hydrate: Crystal Structures of Tetrahydropyran-CO<sub>2</sub> Binary HydrateSatoshi Takeya, Hiroshi Fujihisa, Saman Alavi, et al.
Inorganic Chemistry|February 5, 2024
Phase Diagram Analysis of High-Pressure/High-Temperature Polymorphs of Ammonia BoraneSatoshi Nakano, Hiroshi Fujihisa, Hiroshi Yamawaki, et al.
The Journal of Physical Chemistry. B|September 17, 2010
Phase transition analysis of 5-aminotetrazole from room temperature to the melting pointShigeaki Obata, Satoshi Takeya, Hiroshi Fujihisa, et al.
Pageof 4

Showing results (1-10 of 38) with videos related to

Sort By:
Pageof 4
Inorganic Chemistry|December 12, 2022
Dense Structure of Yttrium Nitride as a Post-Rock-Salt Phase: High-Pressure Experiments and ComputationsHitoshi Yusa, Hiroshi Fujihisa
Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy|September 9, 2021
Infrared spectra of the β and γ phases of oleic acid under high pressureHiroshi Yamawaki, Hiroshi Fujihisa
Inorganic Chemistry|January 26, 2022
High-Pressure Synthesis of Light Lanthanide Dodecaborides (PrB<sub>12</sub> and CeB<sub>12</sub>): Effects of Valence Fluctuation on Volume and Formation PressureHitoshi Yusa, Fumitoshi Iga, Hiroshi Fujihisa
Physical Review Letters|August 11, 2005
New helical chain structure for scandium at 240 GPaYuichi Akahama, Hiroshi Fujihisa, Haruki Kawamura
Inorganic Chemistry|October 21, 2024
Structural Phase Transitions of Mg<sub>2</sub>NiH<sub>4</sub> Induced by NiH<sub>4</sub> Molecular Ion Distortion and Metal Lattice Deformation under High PressuresTakuma Shiga, Takashi Yagi, Hiroshi Fujihisa
The Journal of Chemical Physics|December 22, 2022
Influence of pressure-induced formation of dihydrogen bonds on lattice parameters, volume, and vibrational modes of ammonia boraneSatoshi Nakano, Hiroshi Fujihisa, Hiroshi Yamawaki, et al.
The Journal of Physical Chemistry. B|August 2, 2014
Structure of intermediate phase II of LiNH2 under high pressureHiroshi Yamawaki, Hiroshi Fujihisa, Yoshito Gotoh, et al.
The Journal of Physical Chemistry Letters|February 13, 2023
Thermally Induced Phase Transition of Cubic Structure II Hydrate: Crystal Structures of Tetrahydropyran-CO<sub>2</sub> Binary HydrateSatoshi Takeya, Hiroshi Fujihisa, Saman Alavi, et al.
Inorganic Chemistry|February 5, 2024
Phase Diagram Analysis of High-Pressure/High-Temperature Polymorphs of Ammonia BoraneSatoshi Nakano, Hiroshi Fujihisa, Hiroshi Yamawaki, et al.
The Journal of Physical Chemistry. B|September 17, 2010
Phase transition analysis of 5-aminotetrazole from room temperature to the melting pointShigeaki Obata, Satoshi Takeya, Hiroshi Fujihisa, et al.
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