Researcher Search Results Atsushi Mineshige Atsushi Mineshige (嶺重 温) Please select the form format to download from below 「Education and research environment」format 「No. 4, the Ministry of Education document style ①Outline for Vitae」format 「No. 4, the Ministry of Education document style ②Education and research environment」format Profile Information AffiliationProfessor, Graduate School of Engineering, University of HyogoDegreeDr. Eng.(Kyoto University)Master Eng.(*Himeji Institute of Technology*)researchmap Member ID1000214813External linkhttp://www.eng.u-hyogo.ac.jp/msc/msc5/ Research Interests 5 無機材料化学 固体化学 Ionic conductor 燃料電池 蓄電池 Research Areas 4 Nanotechnology/Materials / Inorganic materials / Nanotechnology/Materials / Inorganic compounds/materials chemistry / Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Electronic devices and equipment / Nanotechnology/Materials / Basic physical chemistry / Papers 117 Optimized preparation of c-axis-aligned polycrystal of doped lanthanum silicate oxyapatite and evaluation of its electrical properties Koichiro Fukuda, Shu Okada, Iori Terao, Atsushi Mineshige, Daisuke Urushihara, Toru Asaka Journal of the Ceramic Society of Japan, 131(11) 870-876, Nov, 2023 Preparation of grain-aligned polycrystal of doped lanthanum silicate oxyapatite by templated grain growth method and evaluation of its structural and electrical properties Shu Okada, Fuminori Maekawa, Risa Tago, Yukito Kobayashi, Iori Terao, Atsushi Mineshige, Daisuke Urushihara, Toru Asaka, Koichiro Fukuda Solid State Ionics, 399, Oct 15, 2023 Formation of La-rich tysonite nano-precipitates in fluorite Ba0.6La0.4F2.4 Shun Sasano, Ryo Ishikawa, Kazuaki Kawahara, Atsushi Mineshige, Naoya Shibata, Yuichi Ikuhara Journal of Power Sources, 557, Feb 15, 2023 Ionic Conduction in Sr-Doped CeF3as Studied by 19F NMR and AC Impedance Measurement Miwa Murakami, Seiya Matsumoto, Atsushi Mineshige Journal of Physical Chemistry C, 126(47) 20135-20142, Dec 1, 2022 19F NMR studies on ionic conduction pathways in tysonite-CeF3 Miwa Murakami, Atsushi Mineshige Journal of Physics and Chemistry of Solids, 161, Feb, 2022 More Misc. 9 水素に「おきかえる」ための技術開発—Technology development to utilize hydrogen energy instead of fossil fuels 嶺重 温 技術士, (693) 4-7, Sep, 2024 電気化学インピーダンス測定の基礎と実際~多孔体電極・イオン伝導体・実用測定(LIB・EDLC)~(その2) 有吉 欽吾, 城間 純, 嶺重 温, 武野 光弘, 内田 悟史 関西電気化学テキストシリーズ, 2022.2 155-180, Oct 31, 2022 電気化学インピーダンス測定の基礎と実際~多孔体電極・イオン伝導体・実用測定(LIB・EDLC)~(その1) 有吉 欽吾, 城間 純, 嶺重 温, 武野 光弘, 内田 悟史 関西電気化学テキストシリーズ, 2022.2 133-154, Oct 31, 2022 活性化エネルギーの低いフッ化物イオン伝導 : 革新型蓄電池用電解質の開発を目指して—Fluoride Ion Conductors with Low Activation Energy—特集 固体中のイオン伝導 嶺重 温 Ceramics Japan = セラミックス : bulletin of the Ceramic Society of Japan, 56(9) 619-622, Sep, 2021 これまでにないSOFC電解質 : アパタイト型酸化物—New Class of Solid Electrolytes Based on Apatite for SOFC Application—特集 燃料電池に関連する基礎研究(1) 嶺重 温 燃料電池 = The Journal of fuel cell technology, 13(2) 15-19, 2013 More Presentations 10 水素エネルギー共同研究センターの最近の研究 嶺重 温 Mar 7, 2025 Invited Ion transport across grain boundaries in CeF3-based solid electrolytes Naoki Miura, Atsushi Mineshige 49th International Conference and Expo on Advanced Ceramics and Composites (ICACC2025), Jan, 2025 MSnF4 (M=Pb , Ba)-based solid electrolytes for room temperature applications Atsushi Mineshige, Maiko Sugiura 49th International Conference and Expo on Advanced Ceramics and Composites (ICACC2025), Jan, 2025 Fluoride ion conductors based on MSnF4 (M=Pb , Ba) solid electrolyte prepared by mechanical milling Atsushi Mineshige, Maiko Sugiura 24th International Conference on Solid State Ionics (SSI-24), Jul, 2024 Fluoride ion conduction mechanism Ba1-xSnxF4 solid electrolyte studied using 19F PFG-NM Arunkumar Dorai, Miwa Murakami, Atsushi Mineshige, Reiji Takekawa, Kiyonori Takegoshi, Takahisa Omata, Junichi Kawamura 24th International Conference on Solid State Ionics (SSI-24), Jul, 2024 More Professional Memberships 2 日本化学会 電気化学会 Works 4 セリア系材料を用いた燃料電池の研究 2000 Study on ceria-based solid oxide fuel cell 2000 セリア系材料内の酸素ポテンシャル分布の評価 1998 Evaluation of oxygen chemical potential variation in ceria-based oxide 1998
Atsushi Mineshige (嶺重 温) Please select the form format to download from below 「Education and research environment」format 「No. 4, the Ministry of Education document style ①Outline for Vitae」format 「No. 4, the Ministry of Education document style ②Education and research environment」format Profile Information AffiliationProfessor, Graduate School of Engineering, University of HyogoDegreeDr. Eng.(Kyoto University)Master Eng.(*Himeji Institute of Technology*)researchmap Member ID1000214813External linkhttp://www.eng.u-hyogo.ac.jp/msc/msc5/ Research Interests 5 無機材料化学 固体化学 Ionic conductor 燃料電池 蓄電池 Research Areas 4 Nanotechnology/Materials / Inorganic materials / Nanotechnology/Materials / Inorganic compounds/materials chemistry / Manufacturing technology (mechanical, electrical/electronic, chemical engineering) / Electronic devices and equipment / Nanotechnology/Materials / Basic physical chemistry / Papers 117 Optimized preparation of c-axis-aligned polycrystal of doped lanthanum silicate oxyapatite and evaluation of its electrical properties Koichiro Fukuda, Shu Okada, Iori Terao, Atsushi Mineshige, Daisuke Urushihara, Toru Asaka Journal of the Ceramic Society of Japan, 131(11) 870-876, Nov, 2023 Preparation of grain-aligned polycrystal of doped lanthanum silicate oxyapatite by templated grain growth method and evaluation of its structural and electrical properties Shu Okada, Fuminori Maekawa, Risa Tago, Yukito Kobayashi, Iori Terao, Atsushi Mineshige, Daisuke Urushihara, Toru Asaka, Koichiro Fukuda Solid State Ionics, 399, Oct 15, 2023 Formation of La-rich tysonite nano-precipitates in fluorite Ba0.6La0.4F2.4 Shun Sasano, Ryo Ishikawa, Kazuaki Kawahara, Atsushi Mineshige, Naoya Shibata, Yuichi Ikuhara Journal of Power Sources, 557, Feb 15, 2023 Ionic Conduction in Sr-Doped CeF3as Studied by 19F NMR and AC Impedance Measurement Miwa Murakami, Seiya Matsumoto, Atsushi Mineshige Journal of Physical Chemistry C, 126(47) 20135-20142, Dec 1, 2022 19F NMR studies on ionic conduction pathways in tysonite-CeF3 Miwa Murakami, Atsushi Mineshige Journal of Physics and Chemistry of Solids, 161, Feb, 2022 More Misc. 9 水素に「おきかえる」ための技術開発—Technology development to utilize hydrogen energy instead of fossil fuels 嶺重 温 技術士, (693) 4-7, Sep, 2024 電気化学インピーダンス測定の基礎と実際~多孔体電極・イオン伝導体・実用測定(LIB・EDLC)~(その2) 有吉 欽吾, 城間 純, 嶺重 温, 武野 光弘, 内田 悟史 関西電気化学テキストシリーズ, 2022.2 155-180, Oct 31, 2022 電気化学インピーダンス測定の基礎と実際~多孔体電極・イオン伝導体・実用測定(LIB・EDLC)~(その1) 有吉 欽吾, 城間 純, 嶺重 温, 武野 光弘, 内田 悟史 関西電気化学テキストシリーズ, 2022.2 133-154, Oct 31, 2022 活性化エネルギーの低いフッ化物イオン伝導 : 革新型蓄電池用電解質の開発を目指して—Fluoride Ion Conductors with Low Activation Energy—特集 固体中のイオン伝導 嶺重 温 Ceramics Japan = セラミックス : bulletin of the Ceramic Society of Japan, 56(9) 619-622, Sep, 2021 これまでにないSOFC電解質 : アパタイト型酸化物—New Class of Solid Electrolytes Based on Apatite for SOFC Application—特集 燃料電池に関連する基礎研究(1) 嶺重 温 燃料電池 = The Journal of fuel cell technology, 13(2) 15-19, 2013 More Presentations 10 水素エネルギー共同研究センターの最近の研究 嶺重 温 Mar 7, 2025 Invited Ion transport across grain boundaries in CeF3-based solid electrolytes Naoki Miura, Atsushi Mineshige 49th International Conference and Expo on Advanced Ceramics and Composites (ICACC2025), Jan, 2025 MSnF4 (M=Pb , Ba)-based solid electrolytes for room temperature applications Atsushi Mineshige, Maiko Sugiura 49th International Conference and Expo on Advanced Ceramics and Composites (ICACC2025), Jan, 2025 Fluoride ion conductors based on MSnF4 (M=Pb , Ba) solid electrolyte prepared by mechanical milling Atsushi Mineshige, Maiko Sugiura 24th International Conference on Solid State Ionics (SSI-24), Jul, 2024 Fluoride ion conduction mechanism Ba1-xSnxF4 solid electrolyte studied using 19F PFG-NM Arunkumar Dorai, Miwa Murakami, Atsushi Mineshige, Reiji Takekawa, Kiyonori Takegoshi, Takahisa Omata, Junichi Kawamura 24th International Conference on Solid State Ionics (SSI-24), Jul, 2024 More Professional Memberships 2 日本化学会 電気化学会 Works 4 セリア系材料を用いた燃料電池の研究 2000 Study on ceria-based solid oxide fuel cell 2000 セリア系材料内の酸素ポテンシャル分布の評価 1998 Evaluation of oxygen chemical potential variation in ceria-based oxide 1998