• 研究課題をさがす
  • 研究者をさがす
  • KAKENの使い方
  1. 課題ページに戻る

2018 年度 実績報告書

ナノ構造の金属材料における評価と光学を使った特性の研究

研究課題

研究課題/領域番号 17F17793
研究機関東北大学

研究代表者

渡辺 健太郎  東北大学, 材料科学高等研究所, 准教授 (40582078)

研究分担者 XIA YANJIE  東北大学, 材料科学高等研究所, 外国人特別研究員
研究期間 (年度) 2017-11-10 – 2020-03-31
キーワードVapor Phase Dealloying / Nanoporous Metal
研究実績の概要

Wrinkled nanoporous metal with 3D bicontinuous structures are emerging as a new class of functional and structural materials for a wide range of applications, including plasmonics for optical property enhancement. For this plasmonic application, it is crutial to control microstructural parameters of 3D bicontinuous nanoporous metals, such as pore size, pore depth, and porosity.
Vapor phase dealloying (VPD) is expected as a universal, highly efficient and environmentally friendly method for fabricating 3D bicontinuous nanoporous metals, by using vapor pressure difference between constituent elements. However, the relation between dealloying conditions and above microstructural parameters are still unclear due to underlying dealloying kinetics, such as thermal evaporation of constituent element, resulting diffusion both in bulk alloys and in pore channels, and alloys phase evolution. In this work, 3D bicontinuous nanoporous Cu by VPD of Cu12Zn88 alloy is chosen as the model system and its dealloying kinetics and alloy phase evolution are investigated.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

In FY2018, we found that Zn is selectively evaporated out from the precursor Cu12Zn88 alloy during the process of VPD due to the vapor pressure difference between Cu and Zn and an intermediate phase Cu36Zn64 is formed in the dealloying front before Zn evaporation. The power law relation between the pore depth and dealloying time reveals the bulk diffusion controlled dealloying process for intermediate phase. The porous structure starts to appear in the intermediate region and the appearance time closely relies on dealloying temperature. The constant dealloying front velocity is mainly dominated by dealloying temperature and slightly increased in high vacuum condition, indicating that the dealloying kinetics is dominated by interfacial effect rather than mass transport effect in pore channel. The two-step dealloying process and the linear dealloying kinetics in nanoporous region provide a new insight for understanding the dealloying process and phase evolution by VPD.

今後の研究の推進方策

Our future work contains the followings.
(1) VPD experiment and data analysis, including VPD of CuZn alloys at different compositions and VPD under different dealloying conditions.
(2) Understanding VPD mechanism by proposing its physical model.
These study will be summarized in a manuscript for publication.

  • 研究成果

    (2件)

すべて 2019 その他

すべて 国際共同研究 (1件) 学会発表 (1件) (うち国際学会 1件)

  • [国際共同研究] ジョンズホプキンス大学(米国)

    • 国名
      米国
    • 外国機関名
      ジョンズホプキンス大学
  • [学会発表] Kinetics of vapor phase dealloying2019

    • 著者名/発表者名
      Yanjie Xia, Zhen Lu, Jiuhui Han, Mingwei Chen
    • 学会等名
      2019 3rd International Symposium on Nanoporous Materials by Alloy Corrosion
    • 国際学会

URL: 

公開日: 2019-12-27  

サービス概要 検索マニュアル よくある質問 お知らせ 利用規程 科研費による研究の帰属

Powered by NII kakenhi