Original Papers- GOTO Takashi -
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total:763
[2016]
121.Densification of AlN ceramics by spark plasma sintering under 1550°C.[Advanced Powder Technology,27,(2016),860-863]Ryota Kobayashi, Yoshihiro Nakajima, Kenji Mochizuki, Koichi Harata, Takashi Goto, Kentaro Iwai, Junichi Tatami
122.High-speed epitaxial growth of SrTiO3 films on MgO substrates by laser chemical vapor deposition.[Ceramics International,42(8),(2016),9981-9987]Jianchao Chen, Akihiko Ito, Takashi Goto
123.Effect of microstructure on mechanical, electrical and thermal properties of B4C-HfB2 composites prepared by arc melting.[Journal of the European Ceramic Society,36,(2016),3929-3937]Rong Tua, Nian Lia, Qizhong Li, Song Zhanga, Lianmeng Zhang, Takashi Goto
124.Fabrication of Al2O3-Ni-CNTs nanocomposites by co-precipitation of CNTs and Ni nanoparticle on Al2O3 powder and spark plasma sintering.[Journal of the Ceramic Society of Japan,124(9),(2016),898-902]Huiyang CAO, Jianfeng ZHANG, Chunlong ZHAO, Gaiye LI, Xin ZHANG and Takashi GOTO
125.High-Speed Preparation of Highly (100)-Oriented CeO2 Film by Laser Chemical Vapor Deposition.[Journal of the American Ceramic Society,99(9),(2016),3104-3110]P.Zhao, S.Su, Y.Wang, C.Chi, Z.H.Zhang, Y.W.Mao, Z.L.Huang, Y.L.Xu, T.Goto, W.K.Wong-Ng
126.Effects of substitution of Ti4+ by Nb5+ on the electrical properties of BaTi2O5 prepared by a floating zone method.[Ceramics International,42,(2016),17283-17289]Keiji Shiga, Hirokazu Katsui, Hiroyuki Kakuda, Kazuma Yoshikawa, Jun Tsuneyoshi, Takashi Goto
127.Ball milling effects for induced carriers and reduced grain size on thermoelectric.[Japanese Journal of Applied Physics,55,(2016),115801-1-115801-7]Shu Mizuno, Mamoru Ishizawa, Hiroyuki Fujishiro, Tomoyuki Naito, Hirokazu Katsui, Takashi Goto
128.Complex impedance and ionic conduction of single-crystalline BaTiO3.[Ferroelectrics,504(1),(2016),64-71]Keiji Shiga, Hirokazu Katsui , Takashi Goto
[2015]
129.Effect of Pressure on Microstructure of <111>-Oriented β-SiC Films: Research Via Electron Backscatter Diffraction.[Journal of American Ceramic Society,98(12),(2015),3713-3718]Song Zhang, Qingfang Xu, Qingyun Sun, Peipei Zhu, Rong Tu, Zhiying Hu, Mingxu Han, Takashi Goto, Lianmeng Zhang, Jiasheng Yan, Shusen Li
10.1111/jace.13823
130.小特集にあたって.[金属,85(7),(2015),3]後藤孝
131.ダイヤモンド基コンポジット工具材料の開発.[金属,85(7),(2015),19-24]且井宏和、後藤孝
132.cBN基コンポジット工具材料の開発.[金属,85(7),(2015),11-18]伊藤暁彦、後藤孝
133.Ti(C, N)-WCコンポジット工具材料の開発.[金属,85(7),(2015),4-10]且井宏和、後藤孝
134.Nd3+-doped Lu2O3 transparent sesquioxide ceramics elaborated by the Spark Plasma Sintering (SPS) method. Part 1: Structural, thermal conductivity and spectroscopic characterization.[Optical Materials,41,(2015),3-11]Alombert-Goget, G., Guyot, Y., Guzik, M., Boulon, G., Ito, A., Goto, T., Yoshikawa, A., Kikuchi, M.
135.Nd3+-doped Lu2O3 transparent sesquioxide ceramics elaborated by the Spark Plasma Sintering (SPS) method. Part 2: First laser output results and comparison with Nd3+-doped Lu2O3 and Nd3+-Y2O3 ceramics elaborated by a conventional method.[Optical Materials,41,(2015),12-16]G. Toci, , M. Vannini, M. Ciofini , A. Lapucci, A. Pirri, A. Ito, T. Goto, A. Yoshikawa, A. Ikesue, G. Alombert-Goget, Y. Guyot, G. Boulon
136.Synthesis of pseudobrookite titanium oxynitride Ti3dO4N films by laser chemical vapor deposition.[Vacuum,116,(2015),121-123]Akihiko Ito , Hye-Sook Joo, Taek-Soo Kim, Takashi Goto
137.Fabrication of Al2O3-Cu Nanocomposites Using Rotary Chemical Vapor Deposition and Spark Plasma Sintering.[Journal of Nanomaterials,2015(790361),(2015)]Jianfeng Zhang, Takashi Goto
138.Oxidation Behavior of ZrB2–SiC Composites at Low Pressures.[Journal of the American Ceramic Society,98(1),(2015),214-222]Rong Tu, Qingyun Sun, Song Zhang, Mingxu Han, Qizhong Li, Hidenori Hirayama, Lianmeng Zhang, Takashi Goto
10.1111/jace.13281
139.Growth Mechanism and Defects of <111>-Oriented b-SiC Films Deposited by Laser Chemical Vapor Deposition.[Journal of the American Ceramic Society,98(1),(2015),236-241]Song Zhang,Qingfang Xu, Rong Tu, Takashi Goto,Lianmeng Zhang
10.1111/jace.13248
140.Calcium phosphate coating of biomedical titanium alloys using metal-organic chemical vapour deposition.[Materials Technology: Advanced Biomaterials,30(B1),(2015),B8-B12]M. Nakai, M. Niinomi, H. Tsutsumi, K. Saito, T. Goto
10.1179/1753555714Y.0000000228
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