[1]. Molecular Crystalline Electrolyte Based on Li{N(SO2CF3)2} and Succinonitrile with Closely Contacted Grain Boundary Interfaces Exhibiting Selective Li-Ion Conductivity and 5 V-Class Electrochemical Stability ACS Applied Energy Materials / - (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Hiroto Katsuragawa, Sawako Mori, Yusuke Tago, Shota Maeda, Shuichi Matsuda, Hikaru Toriu, Ryo Nakayama, Shigeru Kobayashi, Taro Hitosugi, Makoto Moriya [DOI] [2]. One-pot gram-scale rapid synthesis of MN4 complexes with 14-membered ring macrocyclic ligand as a precursor for carbon-based ORR and CO2RR catalysts Dalton Transactions / - (2024) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] Mana Ogawa, Sayaka Usami, Ryo Takahama, Kazuko Iwamoto, Tomomi Nabeta, Shin Kawashima, Ryoichi Kojima, Junya Ohyama, Teruaki Hayakawa, Yuta Nabae, Makoto Moriya [DOI] [3]. Investigating the Interface of Li{N(SO2F)2}(NCCH2CH2CN)2 Molecular 2 Crystal Electrolytes for 5 V Class Solid-State Batteries ACS Applied Materias and Interfaces / - (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] Ruijie Zheng, Shigeru Kobayashi, Mana Ogawa, Hiroto Katsuragawa, Yuki Watanabe, Jun Deng, Ryo Nakayama, Kazunori Nishio, Ryota Shimizu, Yoshitaka Tateyama, Makoto Moriya, Taro Hitosugi [DOI] [4]. / - (2025) [Refereed] non-refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] author [Author] 守谷誠 [5]. Reduced resistance at molecular-crystal electrolyte and LiCoO2 interfaces for high-performance all-solid-state lithium batteries APL Materials / - (2025) [Refereed] refereed [Internationally co-authored papers] non-internationally co-authored paper [Lead author or co-author] co-author [Author] Yuki Watanabe, Shigeru Kobayashi, Zheng Ruijie, Deng Jun, Kenichiro Tanaka, Kazunori Nishio, Ryo Nakayama, Ryota Shimizu, Makoto Moriya, Taro Hitosugi [DOI]
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[1]. (2023) [Book type]book(research) [Sole author, co-author, or author and editor] contributor [Author]守谷誠 [Total page number] 8 [REP page number] 245-252 [2]. (2020) [Book type]book(research) [Sole author, co-author, or author and editor] contributor [Author]河村純一 ほか [REP page number] 第4章 第7節 |
[1]. Development of Cobalt-Based Electrocatalysts for Oxygen Reduction and Hydrogen Evolution Using a Fourteen-Membered Ring Ligand 20th Japan-Korea Symposium on Catalysis (2025/5/) other [Presenter]Zhiqing Feng, Soutaro Honda, Keisuke Awaya, Masato Machida, Makoto Moriya, Yuta Nabae, Junya Ohyama [2]. 5 V級の電気化学安定性を示す高Liイオン伝導性 分子結晶電解質Li2(TFSA)2(SN)3 第50回固体イオニクス討論会 (2024/12/10) other [Presenter]桂川大渡、多湖裕輔、盛佐和子、前田祥汰、松田秀一、鳥生輝、窪田隆樹、中山亮、小林成、一杉太郎、守谷誠 [3]. 全固体電池に向けたLiイオン伝導性分子結晶電解質 JST新技術説明会 (2024/11/28) other [Presenter]守谷誠 [4]. 分子結晶複合硫化物固体電解質を用いた 全固体電池低拘束圧動作 第65回電池討論会 (2024/11/21) other [Presenter]守谷誠、鯉川舜 [5]. Quantitative Investigation of the Resistance at the Interface Between Highly Concentrated Li Salt / Succinonitrile Electrolyte and LiCoO2 Positive Electrode 第14回イオン液体討論会 (2024/11/) other [Presenter]Tomoko Wada, Ruijie Zheng, Kazunori Nishio, Shigeru Kobayashi, Ryo Nakayama, Ryota Shimizu, Makoto Moriya, Taro Hitosugi
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[1]. other イオン伝導パスを有する分子結晶電解質の創製 leader ( 2011/4 ~ 2014/3 ) [Partners] JSTさきがけ「新物質科学と元素戦略」領域 |
[1]. 分子結晶中の秩序構造を利用した室温マグネシウムイオン拡散と固体電解質への展開 ( 2020/9 ~ 2023/3 ) Challenging Research(Exploratory) leader [2]. 全固体マグネシウム硫黄電池への展開を目指した分子結晶電解質の開発 ( 2017/4 ~ 2019/3 ) Grant-in-Aid for Young Scientists (B) leader [3]. 超分子の規則的配列を用いたイオン伝導パス構築とユビキタス金属イオン伝導体への展開 ( 2015/4 ~ 2017/3 ) Grant-in-Aid for Young Scientists (B) leader [4]. 柔軟性結晶を用いた色素増感型太陽電池用電解質の開発 ( 2012/4 ~ 2014/3 ) Grant-in-Aid for Challenging Exploratory Research leader |
[1]. 分子結晶全固体電池の創製 (2022/10 ) [Offer orgnization] JST [System name] CREST「未踏探索空間における革新的物質の開発」 [Role] co-investigator(Kenkyū-buntansha) [2]. コンポジットフィルム型分子結晶性電解質の開発と全固体電池への応用 (2020/12 - 2023/3 ) [Offer orgnization] JST [System name] A-STEP 産学共同(育成型) [Role] principal investigator [3]. 十四員環型活性点の高活性化・高密度化による革新的非白金触媒の研究開発 (2020/9 - 2022/6 ) [Offer orgnization] NEDO [System name] 燃料電池等利用の飛躍的拡大に向けた共通課題解決型産学官連携研究開発事業 [Role] principal investigator [Notes] ステージゲート通過の場合は、2024年度まで延長 [4]. 革新的非白金触媒のビルドアップ作製方法研究開発 (2018/5 - 2020/5 ) [Offer orgnization] NEDO [System name] 先導研究プログラム [Role] principal investigator [5]. 広範な利用可能温度域を有するプロトン性柔粘性結晶電解質の開発と燃料電池の中温無加湿作動への展開 (2017/7 - 2018/7 ) [Offer orgnization] 双葉電子記念財団 [System name] 自然科学研究助成 [Role] principal investigator
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[1]. (2023/3) [2]. (2022/12) [3]. (2019/9) [4]. (2012/9) [5]. (2009/5)
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[1]. プロトン伝導性電解質及び燃料電池 [Application Number] 特願2017-037033 (2017/2/28) [Patent Number] 登録6952975 [2]. マグネシウム二次電池用電解質材料、及びこれを用いたマグネシウム二次電池 [Application Number] 特願2016-054245 (2016/3/17) [Patent Number] 登録6745474 [3]. イオン伝導性固体電解質およびそれを用いたリチウムイオン電池 (2012/3/8) [Patent Number] 登録5473843 [Notes] 特許公開:2013-214510 [4]. 電場応答性ナノ複合流体及び調光素子 (2010/9/13) [Patent Number] 登録5473843 [Notes] 特許公開:2012-058677 [5]. セルロース系材料粒子及びその製造方法 (2010/2/12) [Patent Number] 登録5665073 [Notes] 特許公開2011-162715
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[1]. 日本セラミックス協会2025年年会 現地実行委員 (2025/3) [Role at conference, etc.] other [2]. 機能分子材料研究所講演会の実施(大阪公立大 大橋先生) (2024/11) [Role at conference, etc.] is leader [3]. 機能分子材料研究所講演会の実施(ニューヨーク大学アブダビ校 Pance Naumov先生) (2024/10) [Role at conference, etc.] other [4]. 第4回柔粘性結晶研究会の開催 (2024/6) [Role at conference, etc.] other [5]. 電気化学会第91回大会 実行委員 (2024/3) [Role at conference, etc.] other [Site of conference, etc.] 名古屋大学
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[1]. 柔粘性結晶研究会の立ち上げ (2022/10 ) [Notes] https://plastic-crystal.net/ [2]. MEET UP静岡での研究内容の紹介 (2022/1 ) [Notes] 主催:リバネス [3]. JST新技術説明会での研究成果の紹介 (2021/11 )
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