Substitutional alloy of Bi and Te at high pressure

Being a best known thermoelectric material and a topological insulator at ambient condition, magic bismuth telluride (Bi2Te3) under pressure transforms into several superconducting phases, whose structures remain unsolved for decades. Here, we have solved the two long-puzzling low high-pressure phas...

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Veröffentlicht in:Physical review letters 2011-04, Vol.106 (14), p.145501-145501, Article 145501
Hauptverfasser: Zhu, Li, Wang, Hui, Wang, Yanchao, Lv, Jian, Ma, Yanmei, Cui, Qiliang, Ma, Yanming, Zou, Guangtian
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Sprache:eng
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Zusammenfassung:Being a best known thermoelectric material and a topological insulator at ambient condition, magic bismuth telluride (Bi2Te3) under pressure transforms into several superconducting phases, whose structures remain unsolved for decades. Here, we have solved the two long-puzzling low high-pressure phases as seven- and eightfold monoclinic structures, respectively, through particle-swarm optimization technique on crystal structure prediction. Above 14.4 GPa, we experimentally discovered that Bi2Te3 unexpectedly develops into a Bi-Te substitutional alloy by adopting a body-centered cubic disordered structure stable at least up to 52.1 GPa. The continuously monoclinic distortion leads to the ultimate formation of the Bi-Te alloy, which is attributed to the Bi→Te charge transfer under pressure. Our research provides a route to find alloys made of nonmetallic elements for a variety of applications.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.106.145501