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高熵合金及其与氢的亲和力:从坎托合金到铂族元素合金

High-Entropy Alloys and Their Affinity with Hydrogen: From Cantor to Platinum Group Elements Alloys.

作者信息

Glazyrin Konstantin, Spektor Kristina, Bykov Maxim, Dong Weiwei, Yu Ji-Hun Yu, Yang Sangsun, Lee Jai-Sung Lee, Divinski Sergiy V, Hanfland Michael, Yusenko Kirill V

机构信息

Deutsches Elektronen-Synchrotron (DESY), Notkestr. 85, 22607, Hamburg, Germany.

Institute of Inorganic Chemistry, University of Cologne, 50939, Cologne, Germany.

出版信息

Adv Sci (Weinh). 2024 Aug;11(31):e2401741. doi: 10.1002/advs.202401741. Epub 2024 Jun 18.

Abstract

Properties of high-entropy alloys are currently in the spotlight due to their promising applications. One of the least investigated aspects is the affinity of these alloys to hydrogen, its diffusion, and reactions. In this study, high pressure is applied at ambient temperature and stress-induced diffusion of hydrogen is investigated into the structure of high-entropy alloys (HEA) including the famous Cantor alloy as well as less known, but nevertheless important platinum group (PGM) alloys. By applying X-ray diffraction to samples loaded into diamond anvil cells, a comparative investigation of transition element incorporating HEA alloys in Ne and H pressure-transmitting media is performed at ambient temperature. Even under stresses far exceeding conventional industrial processes, both Cantor and PGM alloys show exceptional resistance to hydride formation, on par with widely used industrial grade Cu-Be alloys. The observations inspire optimism for practical HEA applications in hydrogen-relevant industry and technology (e.g., coatings, etc), particularly those related to transport and storage.

摘要

由于具有广阔的应用前景,高熵合金的特性目前备受关注。其中研究最少的一个方面是这些合金与氢的亲和力、氢的扩散以及反应。在本研究中,在室温下施加高压,并研究氢在应力作用下向高熵合金(HEA)结构中的扩散,其中包括著名的坎托合金以及鲜为人知但同样重要的铂族(PGM)合金。通过对装入金刚石对顶砧槽中的样品进行X射线衍射,在室温下对在氖和氢压力传递介质中掺入过渡元素的HEA合金进行了对比研究。即使在远远超过传统工业工艺的应力下,坎托合金和PGM合金对氢化物形成都表现出非凡的抗性,与广泛使用的工业级铜铍合金相当。这些观察结果为高熵合金在与氢相关的工业和技术(如涂层等)中的实际应用带来了乐观预期,特别是那些与运输和储存相关的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/970c/11336920/e3105362b0d2/ADVS-11-2401741-g006.jpg

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