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  1. Sep 16, 2024 · A clay−metal complex multilayer film was prepared by the Langmuir−Blodgett technique. A monolayer of an amphiphilic ruthenium(II) complex, [Ru(phen)2(dC18bpy)](ClO4)2 (phen = 1,10-phenanthroline, dC18bpy = 4,4‘-dioctadecyl-2,2‘-bipyridyl), was formed on an aqueous suspension of hectorite clay (Li-HT). The monolayer acted as a template for adsorption of a clay particle. A hybrid monolayer of a clay and a metal complex was transferred onto a hydrophilic glass plate to form a Z-type ...

  2. Sep 11, 2024 · New Journal of Chemistry. Metal complex-based multi-stimuli responsive amphiphiles: development into monolayers and giant vesicles †. Zen Matsushita,a Hiroki Goto,b Mio Tamada,a Atsuki Maeda,a Yasushi Umemura b and Masanari Hirahara *a . Author affiliations. Abstract.

  3. Sep 26, 2024 · Masanari Hirahara, Hiroki Goto, Masayuki Yagi, Yasushi Umemura. Chemical Communications 56 ( 84 ) 12825 - 12828 2020

  4. 5 days ago · This is a list of members of the Diet of Japan. The Diet has two chambers: the House of Councillors (upper house) and the House of Representatives (lower house). Councillors serve six year terms, with half being elected every three years.

  5. 2 days ago · Acknowledgments. Acknowledgment. Published: 01 October 2024. (2024) Cite this article. Download PDF. We appreciate the invaluable contributions of the following reviewers during the editing Vol. 20 Nos. 1–4. Azmiah Abd Ghafar.

  6. Sep 11, 2024 · Zen Matsushita, Hiroki Goto, Mio Tamada, Atsuki Maeda, Yasushi Umemura, Masanari Hirahara. 刺激响应软材料已被广泛研究,以促进原始细胞的众多应用和基本理解。 在这项工作中,多重刺激响应钌配合物(p-1 和 d-1)已被纳入单层和巨型多层囊泡中。 具有两个长烷基链的配合物p-1具有圆柱体形状,而光异构化配合物d-1具有截锥体形状。 在空气-水界面上,p-1 由于光异构化为 d-1 而充当光响应单分子层。 根据π-A等温曲线,实验获得的p-1(0.79 nm2 molecular-1)的分子面积与p-1(0.76 nm2 molecular-1)中亲水部分的计算尺寸非常吻合。

  7. Sep 19, 2024 · 梅村 雅之. ウメムラ マサユキ | Umemura Masayuki. 所属機関・部署: 筑波大学. 研究分野 (1件): 天文学. 研究キーワード (7件): 宇宙構造 , 宇宙第一世代天体 , 超巨大ブラックホール , 銀河中心核 , 銀河形成 , 宇宙生命学 , 光バイオイメージング医学. 競争的資金等の研究課題 (28件): 2021 - 2025 高精度一般相対論的輻射輸送で探る超巨大ブラックホールの時空構造と起源. 2020 - 2024 乱流の大規模直接数値計算から探る原始惑星系円盤のダスト成長の新シナリオ. 2019 - 2023 多重AGNの統合研究で紐解く超巨大ブラックホールの起源.