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通过高熵合金中的元素调整来定制局部化学有序性。

Tailoring Local Chemical Ordering via Elemental Tuning in High-Entropy Alloys.

作者信息

Huang Zhennan, Li Tangyuan, Li Boyang, Dong Qi, Smith Jacob, Li Shuke, Xu Lin, Wang Guofeng, Chi Miaofang, Hu Liangbing

机构信息

Department of Materials Science and Engineering, University of Maryland, College Park, Maryland 20742, United States.

Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, United States.

出版信息

J Am Chem Soc. 2024 Jan 24;146(3):2167-2173. doi: 10.1021/jacs.3c12048. Epub 2024 Jan 12.

Abstract

Due to the large multi-elemental space desired for property screening and optimization, high-entropy alloys (HEAs) hold greater potential over conventional alloys for a range of applications, such as structural materials, energy conversion, and catalysis. However, the relationship between the HEA composition and its local structural/elemental configuration is not well understood, particularly in noble-metal-based HEA nanomaterials, hindering the design and development of nano-HEAs in energy conversion and catalysis applications. Herein, we determined precise atomic-level structural and elemental arrangements in model HEAs composed of RhPtPdFeCo and RuPtPdFeCo to unveil their local characteristics. Notably, by changing just one constituent element in the HEA (Rh to Ru), we found dramatic changes in the elemental arrangement from complete random mixing to a local single elemental ordering feature. Additionally, we demonstrate that the local ordering in RuPtPdFeCo can be further controlled by varying the Ru concentration, allowing us to toggle between local Ru clustering and distinct heterostructures in multicomponent systems. Overall, our study presents a practical approach for manipulating local atomic structures and elemental arrangements in noble-metal-based HEA systems, which could provide in-depth knowledge to mechanistically understand the functionality of noble-metal-based HEA nanomaterials in practical applications.

摘要

由于在性能筛选和优化方面需要较大的多元素空间,高熵合金(HEAs)在一系列应用中,如结构材料、能量转换和催化等方面,比传统合金具有更大的潜力。然而,人们对高熵合金的成分与其局部结构/元素构型之间的关系了解并不充分,特别是在基于贵金属的高熵合金纳米材料中,这阻碍了纳米高熵合金在能量转换和催化应用中的设计与开发。在此,我们确定了由RhPtPdFeCo和RuPtPdFeCo组成的模型高熵合金中精确的原子级结构和元素排列,以揭示其局部特征。值得注意的是,通过仅改变高熵合金中的一种组成元素(从Rh到Ru),我们发现元素排列发生了显著变化,从完全随机混合转变为局部单元素有序特征。此外,我们证明了通过改变Ru浓度可以进一步控制RuPtPdFeCo中的局部有序性,使我们能够在多组分体系中的局部Ru簇和不同的异质结构之间切换。总体而言,我们的研究提出了一种在基于贵金属的高熵合金体系中操纵局部原子结构和元素排列的实用方法,这可以为从机理上理解基于贵金属的高熵合金纳米材料在实际应用中的功能提供深入的知识。

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