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Main Authors: Glazyrin, Konstantin, Spektor, Kristina, Bykov, Maxim, Dong, Weiwei, Yu, Ji-Hun, Yang, Sangsun, Lee, Jai-Sun, Divinski, Sergey, Hanfland, Michael, Yusenko, Kirill
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2401.07802
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author Glazyrin, Konstantin
Spektor, Kristina
Bykov, Maxim
Dong, Weiwei
Yu, Ji-Hun
Yang, Sangsun
Lee, Jai-Sun
Divinski, Sergey
Hanfland, Michael
Yusenko, Kirill
author_facet Glazyrin, Konstantin
Spektor, Kristina
Bykov, Maxim
Dong, Weiwei
Yu, Ji-Hun
Yang, Sangsun
Lee, Jai-Sun
Divinski, Sergey
Hanfland, Michael
Yusenko, Kirill
contents 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 we apply high-pressure at ambient temperature and investigate stress-induced diffusion of hydrogen into the tructure 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 we perform a comparative investigation of these HEA alloys in Ne and H2 pressure-transmitting media. Surprisingly, 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 CuBe alloys. Our observations inspire optimism for practical HEA applications in hydrogen-relevant industry and technology e.g. coatings, etc, particularly those related to transport and storage.
format Preprint
id arxiv_https___arxiv_org_abs_2401_07802
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High entropy alloys and their affinity to hydrogen: from Cantor to platinum group elements alloys
Glazyrin, Konstantin
Spektor, Kristina
Bykov, Maxim
Dong, Weiwei
Yu, Ji-Hun
Yang, Sangsun
Lee, Jai-Sun
Divinski, Sergey
Hanfland, Michael
Yusenko, Kirill
Materials Science
Applied Physics
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 we apply high-pressure at ambient temperature and investigate stress-induced diffusion of hydrogen into the tructure 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 we perform a comparative investigation of these HEA alloys in Ne and H2 pressure-transmitting media. Surprisingly, 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 CuBe alloys. Our observations inspire optimism for practical HEA applications in hydrogen-relevant industry and technology e.g. coatings, etc, particularly those related to transport and storage.
title High entropy alloys and their affinity to hydrogen: from Cantor to platinum group elements alloys
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2401.07802