Rchr
J-GLOBAL ID:200901001902314835   Update date: Dec. 11, 2024

Mayama Hiroyuki

マヤマ ヒロユキ | Mayama Hiroyuki
Affiliation and department:
Job title: Professor
Homepage URL  (1): http://www.es.hokudai.ac.jp/labo/nano_device/Top.html
Research field  (1): Bio-, chemical, and soft-matter physics
Research keywords  (5): Nonlinear Science ,  Chemical Physics of Fractal System ,  Soft Matter Physics ,  Adhesion, Friction ,  Wetting Phenomena
Research theme for competitive and other funds  (16):
  • 2023 - 2028 触覚インフォマティクスを利用した魅力喚起プロセスのモデリングとその応用
  • 2018 - 2023 Wetting of Real Surface with Chemical and Physical Defects
  • 2015 - 2017 環境に応じて運動するスライム構築の実現に向けたシステムデザイン
  • 2014 - 2017 Theoretical understanding for wetting phenomena of plants, insects and animals through experiments
  • 2013 - 2015 BZ反応場とシンクロする高分子ゲルの力学的性質とダイナミクスに関する理論
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Papers (85):
  • Yuki Hashimoto, Amane Hase, Ayumu Tani, Ryo Nishimura, Yohei Hattori, Hiroyuki Mayama, Satoshi Yokojima, Shinichiro Nakamura, Kingo Uchida. Polymer replica of microcrystalline surface with dual wettability, mimicking a termite wing. Polymer Journal. 2024
  • Yuki Hashimoto, Amane Hase, Ryotaro Shiromae, Ryo Nishimura, Masakazu Morimoto, Yohei Hattori, Hiroyuki Mayama, Satoshi Yokojima, Shinichiro Nakamura, Kingo Uchida. Straightforward Fabrication of Double Roughness Structures on a Microcrystalline Film of a Diarylethene Derivative. Langmuir. 2024
  • Ryo Nishimura, Ayako Fujimoto, Takashi Kamitanaka, Haruki Sugiyama, Akiko Sekine, Nobuhiro Yasuda, Yohei Hattori, Masakazu Morimoto, Hiroyuki Mayama, Satoshi Yokojima, et al. Self-Assembly of Chiral Diarylethene Microcrystals by the Sublimation Process to Form Foliage Scroll Pattern. Crystal Growth & Design. 2024. 24. 7. 2791-2798
  • Momoka Sano, Hiroyuki Mayama, Yoshimune Nonomura. Friction dynamics of human hair treated with water or cationic surfactant aqueous solution. JOURNAL OF SURFACTANTS AND DETERGENTS. 2023. 26. 2. 185-193
  • Kaoru Uesugi, Hiroyuki Mayama, Keisuke Morishima. Analysis of rowing force of the water strider middle leg by direct measurement using a bio-approaching probe and by indirect measurement using image analysis. Cyborg and Bionic Systems. 2023
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MISC (30):
  • 内田欣吾, 西村涼, 横島智, 眞山博幸. シロアリの翅の表面構造と特殊な濡れ性を模倣した結晶膜の作製. しろあり. 2021. 175
  • 西村涼, 眞山博幸, 横島智, 内田欣吾. テングシロアリの翅を模倣した膜で霧から水を作る. バイオサイエンスとインダストリー. 2020. 78. 2
  • 西村 涼, 眞山 博幸, 横島 智, 内田 欣吾. 二つの濡れ性を示す表面を創る!シロアリの翅の表面構造を模倣した材料. 化学. 2020. 75. 1. 44-50
  • 眞山博幸. ソフトマター物理からみた昆虫と植物の濡れ現象. アグリバイオ. 2017. 1. 3. 78-80
  • 眞山博幸. 昆虫と植物の濡れ現象 -気門や気孔への水の浸透について-. 昆虫と自然. 2016. 51. 12. 34-35
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Books (2):
  • Biomimetics
    JENNY STANFORD PUBLISHING 2022 ISBN:9789814968102
  • 超撥水超撥油滑液性表面の技術
    サイエンス&テクノロジー 2016 ISBN:9784864281348
Lectures and oral presentations  (72):
  • 粘弾性体の摩擦力の応答:正弦波状にこすったときの皮膚の変形と摩擦を理解するためのモデル
    (第74回コロイドおよび界面化学討論会)
  • Theoretical Consideration on Bouncing Behavior of Water Droplet on Superhydrophobic Surface 超撥水表面上の水滴の跳ね返り挙動に関する理論的考察
    (第60回日本生物物理学会年会)
  • 超撥水表面での水滴の跳ね返り確率
    (第73回コロイドおよび界面化学討論会)
  • Adhesion Probability of Droplets onto Structured Surface
    (The 39th International Conference of Photopolymer Science and Technology)
  • 超撥水表面をどうデザインするか:ハスの葉とシロアリの翅の表面構造から学ぶ
    (第53回洗浄に関するシンポジウム)
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Education (8):
  • - 1999 Hokkaido University Graduate School, Division of Engineering
  • - 1999 Hokkaido University
  • - 1999 Hokkaido University Graduate School, Division of Engineering
  • - 1996 Hokkaido University
  • - 1996 Hokkaido University Graduate School, Division of Engineering
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Professional career (1):
  • 博士(工学) (北海道大学)
Work history (13):
  • 2024/03 - 現在 Asahikawa Medical University Department of Chemistry Professor
  • 2021/09 - 現在 Asahikawa Medical College Associate Professor
  • 2012/09 - 2024/02 Asahikawa Medical University Department of Chemistry Associate Professor
  • 2010/04 - 2012/08 Hokkaido University Assistant Professor
  • 2007/04 - 2012/08 Hokkaido University Research Institute for Electronic Science Assistant Professor
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Association Membership(s) (3):
The Japanese Society of Snow and Ice ,  高分子学会 ,  日本物理学会
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