Rchr
J-GLOBAL ID:200901005151391966   Update date: Sep. 09, 2024

Nakayama Koji

ナカヤマ コウジ | Nakayama Koji
Affiliation and department:
Job title: Associate Professor
Research field  (4): Inorganic materials ,  Thin-film surfaces and interfaces ,  Metallic materials ,  Nanomaterials
Research theme for competitive and other funds  (11):
  • 2021 - 2024 アモルファス材料表面における構造的不均一性に関する研究
  • 2013 - 2017 Development of magnetic sensor using amorphous alloy nanowire
  • 2011 - 2012 Nanomechanical characterization of Pd based amorphous nanowire
  • 2006 - 2007 Property control of semiconductor nanostructure using surface strain as a new parameter
  • 2006 - 2007 バルク金属ガラス表面の超微細加工法の確立
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Papers (73):
  • Koji S. Nakayama, Masahiko Nishijima, Yicheng Zhang, Chuantong Chen, Minoru Ueshima, Katsuaki Suganuma. Metastable phases of Ag-Si: amorphous Si and Ag-nodule mediated bonding. Scientific Reports. 2024. 14. 1
  • Yang Liu, Chuantong Chen, Ye Wang, Zheng Zhang, Ran Liu, Minoru Ueshima, Ichiro Ota, Hiroshi Nishikawa, Masahiko Nishijima, Koji S. Nakayama, et al. Development of Ag@Si composite sinter joining with ultra-high resistance to thermal shock test for SiC power device: Experiment validation and numerical simulation. Composites Part B: Engineering. 2024. 281
  • Yang Liu, Chuantong Chen, Koji S. Nakayama, Minoru Ueshima, Takeshi Sakamoto, Naoe Takuya, Hiroshi Nishikawa, Katsuaki Suganuma. Enhanced reliability for power modules via a new Ag/Si sinter joining strategy. Advancing Microelectronics. 2023. 2023. EMPC. 242-244
  • Junpei T. Okada, Patrick H.L. Sit, Ryo Ishikawa, Takehiko Ishikawa, Jinfan Chen, Koji S. Nakayama, Kensaku Maeda, Yoshihiko Yokoyama, Yuki Watanabe, Paul François Paradis, et al. Phase relation between supercooled liquid and amorphous silicon. Applied Physics Letters. 2020. 116. 9
  • Teppei Saito, Norihito Shiraiwa, Yuta Morioka, Kazuto Akagi, Koji S. Nakayama, Tadafumi Adschiri, Naoki Asao. Granular Barium Titanate Nanowire-Based Adsorbents for the Removal of Strontium Ions from Contaminated Water. ACS Applied Nano Materials. 2019. 2. 11. 6793-6797
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MISC (31):
  • Koji Nakayama. 金属ガラスナノワイヤー. 2019
  • 齋藤哲平, 赤木和人, 中山幸仁, 阿尻雅文, 浅尾直樹, 浅尾直樹. ストロンチウム吸着特性を有するチタン酸塩ナノワイヤーの作製と評価. 日本化学会春季年会講演予稿集(CD-ROM). 2019. 99th
  • 齋藤哲平, 赤木和人, 中山幸仁, 阿尻雅文, 浅尾直樹, 浅尾直樹. 脱合金酸化法によるチタン酸塩ナノワイヤーの作製とストロンチウム吸着性能評価. 日本原子力学会春の年会予稿集(CD-ROM). 2018. 2018
  • Koji Nakayama. ナノワイヤー: 直径分布を数理解析で. AIMResearch. 2016
  • Koji Nakayama. ナノロッド: 低温域で機能する酸素吸蔵放出材料. AIMResearch. 2016
more...
Patents (12):
Professional career (1):
  • 博士(工学) (Yokohama National University)
Association Membership(s) (1):
日本金属学会
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