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Synthesis of high-entropy hydride from the cantor alloy (fcc–CoCrFeNiMn) at extreme conditions

K. Glazyrin, K. Spektor, M. Bykov, P. B Carvalho, W. Dong, F. Körmann, A. Sano-Furukawa, T. Hattori, D. Beyer, M. Sahlberg, Y. Ikeda, J. Yu, Y. Sangsun, J. Lee, S. Bhat, M. Hanfland, B. Grabowski, S. Divinski, K. Yusenko

Nature Communications, 17, 2622, (2026)

DOI: 10.1038/s41467-026-70483-3

Download: BibTEX

Studies of high-entropy materials contribute to various fields of science and reveal ever more exciting properties of applied interest. Here, we perform a study of the resistance of a Cantor alloy (CoCrFeNiMn) to hydrogen through high-pressure experiments at elevated temperatures by X-ray and neutron time-of-flight experiments and ab initio calculations. We report formation of an fcc hydride based on the Cantor alloy composition. We also provide its characterization, including an estimate of hydrogen content. These findings contribute to the growing body of knowledge on the complex chemistry of high-entropy alloys and high-entropy hydrides.

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{"type":"article", "name":"k.glazyrin20263", "author":"K. Glazyrin and K. Spektor and M. Bykov and P. B Carvalho and W. Dong and F. Körmann and A. Sano-Furukawa and T. Hattori and D. Beyer and M. Sahlberg and Y. Ikeda and J. Yu and Y. Sangsun and J. Lee and S. Bhat and M. Hanfland and B. Grabowski and S. Divinski and K. Yusenko", "title":"Synthesis of highentropy hydride from the cantor alloy (fcc–CoCrFeNiMn) at extreme conditions", "journal":"Nature Communications", "volume":"17", "OPTnumber":"", "OPTmonth":"3", "year":"2026", "OPTpages":"2622", "OPTnote":"", "OPTkey":"Corrosion; Structure of solids and liquids", "DOI":"10.1038/s41467-026-70483-3"}
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