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後藤 陽介

氏 名後藤 陽介ゴトウ ヨウスケごとう ようすけ 
職 位助教
所 属首都大学東京理学部 物理学科
理学研究科 物理学専攻
2018年再編前の所属
都市教養学部 理工学系 物理学コース
理工学研究科 物理学専攻
 
専門・研究分野固体物理
最終学歴・学位博士(工学)
研究テーマ新しい機能性材料の開発
研究キーワード熱電変換、超伝導、無機合成
研究業績・著書・
論文、その他
それに準じる業績
1. 原著論文(筆頭著者)
1.1 “Effect of Te substitution on crystal structure and transport properties of AgBiSe2 thermoelectric material”
Y. Goto, A. Nishida, H. Nishiate, M. Murata, C. H. Lee, A. Miura, C. Moriyoshi, Y. Kuroiwa, and Y. Mizuguchi
Dalton Transactions (2018) DOI: 10.1039/C7DT04821A

1.2 “A particulate photocatalyst water splitting panel for large-scale solar hydrogen generation”
Y. Goto, T. Hisatomi, Q. Wang, T. Higashi, K. Ishikiriyama, T. Maeda, Y. Sakata, S. Okunaka, H. Tokudome, M. Katayama, S. Akiyama, H. Nishiyama, Y. Inoue, T. Setoyama, T. Minegishi, T. Takata, T. Yamada, and K. Domen
Joule (2018) DOI: https://doi.org/10.1016/j.joule.2017.12.009

1.3 “SnAs-based layered superconductor NaSn2As2”
Y. Goto, A. Yamada, T. D. Matsuda, Y. Aoki, and Y. Mizuguchi
Journal of the Physical Society of Japan 86, 123701 (2017). [Editor’s choice]

1.4 “Bulk superconductivity induced by Se substitution in layered BiCh2-based compounds Eu0.5Ce0.5FBiS2?xSex”
Y. Goto, R. Sogabe, and Y. Mizuguchi
Journal of the Physical Society of Japan 86, 104712 (2017).

1.5 “Particulate (ZnSe)0.85(CuIn0.7Ga0.3Se2)0.15 photocathode modified with CdS and ZnS for sunlight-driven overall water splitting”
Y. Goto, T. Minegishi, T. Higashi, H. Kaneko, Y. Kageshima, Y. Kuang, M. Nakabayashi, N. Shibata, H. Ishihara, T. Hayashi, A. Kudo, T. Yamada, and K. Domen
Journal of Materials Chemistry A 5, 21242 (2017).

1.6 “Crystal structure, electronic structure, and photocatalytic activity of oxysulfides: La2Ta2ZrS2O8, La2Ta2TiS2O8, and La2Nb2TiS2O8”
Y. Goto, J. Seo, K. Kumamoto, T. Hisatomi, Y. Mizuguchi, Y. Kamihara, M. Katayama, T. Minegishi, and K. Domen
Inorganic Chemistry 55, 3674?3679 (2016).

1.7 “Electrical and thermal transport of layered bismuth-sulfide EuBiS2F at temperatures between 300 and 623 K”
Y. Goto, J. Kajitani, Y. Mizuguchi, Y. Kamihara, and M. Matoba
Journal of the Physical Society of Japan 84, 085003?085004 (2015).

1.8 “Electrical/thermal transport and electronic structure of the binary cobalt pnictides CoPn2 (Pn = As and Sb)”
Y. Goto, S. Miyao, Y. Kamihara, and M. Matoba
AIP Advances 5, 067147?067153 (2015).

1.9 “Effect of Sn-substitution on thermoelectric properties of copper-based sulfide, famatinite Cu3SbS4”
Y. Goto, Y. Sakai, Y. Kamihara, and M. Matoba
Journal of the Physical Society of Japan 84, 044706?044710 (2015).
【JPSJ top 10 Cited Articles in 2016 from Vol. 84 (2015)】

1.10 “Electronic structure and transport properties of Cu-deficient kuramite Cu3?xSnS4”
Y. Goto, Y. Sakai, Y. Kamihara, and M. Matoba
Japanese Journal of Applied Physics 54, 021801?021805 (2015).

1.11 “Effects of the Cu off-stoichiometry on transport properties of wide gap p-type semiconductor, layered oxysulfide LaCuSO”
Y. Goto, M. Tanaki, Y. Okusa, T. Shibuya, K. Yasuoka, M. Matoba, and Y. Kamihara
Applied Physics Letters 105, 022104?022107 (2014).

1.12 “Effect of indium substitution on the thermoelectric properties of orthorhombic Cu4SnS4”
Y. Goto, Y. Kamihara, and M. Matoba
Journal of Electronic Materials 43, 2202?2205 (2014).

1.13 “Enhanced thermoelectric figure of merit in stannite?kuramite solid solutions Cu2+xFe1?xSnS4?y (x = 0?1) with anisotropy lowering”
Y. Goto, F. Naito, R. Sato, K. Yoshiyasu, T. Itoh, Y. Kamihara, and M. Matoba,
Inorganic Chemistry 52, 9861?9866 (2013).

1.14 “First principles calculations of electronic structures of orthorhombic and monoclinic Cu4SnS4”
Y. Goto, Y. Kamihara, and M. Matoba
Physica Status Solidi C 10, 1127?1129 (2013).
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