4.7 Article

Synthesis of high-entropy alloy thin films via grain boundary diffusion-assisted solid-state alloying

期刊

SCRIPTA MATERIALIA
卷 207, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.scriptamat.2021.114302

关键词

Multilayer thin film; Solid-state alloying; Grain boundary diffusion; High-entropy alloy film

资金

  1. National Research Founda-tion (NRF) of Korea - Ministry of Education [NRF-2019R1A6A3A01092651, NRF-2020R1A2C2101047, 2020M3H4A3106736, 2021M3H4A6A01045764]
  2. NRF of Korea - Min-istry of Science and ICT [NRF-2019M3D1A1079215, NRF-2018M3A7B8060601]
  3. Louis Beecherl, Jr. Endowment Fund
  4. National Research Foundation of Korea [2021M3H4A6A01045764, 2020M3H4A3106736] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

Grain boundary diffusion-assisted solid-state alloying can be utilized to synthesize high-entropy alloy thin films for various multicomponent alloy systems by controlling the layer thickness in multilayer films. This method allows alloying elements to diffuse through grain boundaries into different layers, forming a homogeneous reactive phase.
Herein, CoCrFeNi high-entropy alloy thin films were successfully synthesized via solid-state alloying from Al-6(CoCrFeNi)(94) multilayer films, forming a CoCrFeNi-based solid solution phase with a face-centered cubic structure by optimizing Al content to prevent any oxide reaction. The microstructural and phase evolutions in the multilayer films were systematically investigated to understand the alloying behavior. Interestingly, it can be evaluated that the alloying elements could be diffused into layers, even those with nonconnected interfaces, through the grain boundaries owing to the presence of nanostructured columnar grains. Thus, these grain boundaries act as a network of diffusion paths for alloying elemental atoms to be homogenized throughout multilayer films and form the reactive phase regardless of the thermodynamic and kinetic prediction. Consequently, grain boundary diffusion-assisted solid-state alloying can be used to synthesize high-entropy alloy thin films for various multicomponent alloy systems by only controlling the layer thickness in multilayer films. (C) 2021 The Author(s). Published by Elsevier Ltd on behalf of Acta Materialia Inc.

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