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  1.  39
    Atomic structure, energetics, and chemical bonding of Y doped Σ13 grain boundaries in α-Al2O3.Shinya Azuma,Naoya Shibata,Teruyasu Mizoguchi,Scott D. Findlay,Kaoru Nakamura &Yuichi Ikuhara -2013 -Philosophical Magazine 93 (10-12):1158-1171.
  2.  22
    Direct observation of intergranular cracks in sintered silicon nitride.Seiichiro Ii ‖,Chihiro Iwamoto,Katsuyuki Matsunaga,Takahisa Yamamoto,Masato Yoshiya &Yuichi Ikuhara -2004 -Philosophical Magazine 84 (25-26):2767-2775.
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  3.  31
    High-resolution observation of basal-plane C-core edge dislocations in 4H–SiC crystal by transmission electron microscopy.Hirofumi Matsuhata,Takeharu Kato,Susumu Tsukimoto &Yuichi Ikuhara -2012 -Philosophical Magazine 92 (31):3780-3788.
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  4.  39
    Grain-boundary faceting at a ‡ = 3, [110]/{112} grain boundary in a cubic zirconia bicrystal.Naoya Shibata,Fumiyasu Oba,Takahisa Yamamoto,Taketo Sakuma &Yuichi Ikuhara -2003 -Philosophical Magazine 83 (19):2221-2246.
    The atomic structure of a ‡ = 3, [110]/{112} grain boundary in a yttria-stabilized cubic zirconia bicrystal has been investigated by high-resolution transmission electron microscopy . It was found that the grain boundary migrated to form periodic facets, although the bicrystal was initially joined so as to have the symmetric boundary plane of {112}. The faceted boundary planes were indexed as {111}/{115}. The structure of the {111}/{115} grain boundary was composed of an alternate array of two types of structure unit: (...) {112}- and {111}-type structure units. HRTEM observations combined with lattice statics calculations verified that both crystals were relatively shifted by [110] along the rotation axis to form a stable grain-boundary structure. A weak-beam dark-field image revealed that there was a periodic array of dislocations along the grain boundary. The grain-boundary dislocations were considered to be introduced by the slight misorientation from the perfect ‡ = 3 orientation. The fact that the periodicity of the facets corresponded to that of the grain-boundary dislocations must indicate that the introduction of the grain-boundary dislocations is closely related to the periodicity of the facets. An atomic flipping model has been proposed for the facet growth from the initial ‡ = 3, {112} grain boundary. (shrink)
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  5.  27
    Investigation of V-shaped extended defects in a 4H–SiC epitaxial film.Eita Tochigi,Hirofumi Matsuhata,Hirotaka Yamaguchi,Takashi Sekiguchi,Hajime Okumura &Yuichi Ikuhara -forthcoming -Philosophical Magazine:1-14.
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  6.  31
    First principles study of oxygen diffusion in aα-alumina twin grain boundary.Tetsuya Tohei,Yuito Watanabe,Nobuaki Takahashi,Tsubasa Nakagawa,Naoya Shibata &Yuichi Ikuhara -2015 -Philosophical Magazine 95 (35):3985-3999.
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  7.  28
    X-ray absorption fine-structure study on the fine structure of lutetium segregated at grain boundaries in fine-grained polycrystalline alumina.Hidehiro Yoshida,Yuichi Ikuhara,Taketo Sakuma,Masaki Sakurai &Eiichiro Matsubara -2004 -Philosophical Magazine 84 (9):865-876.
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