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Coexistence of multiple metastable polytypes in rhombohedral bismuth.


ABSTRACT: Derivative structural polytypes coexisting with the rhombohedral A7 structure of elemental bismuth (Bi) have been discovered at ambient condition, based on microstructure analyses of pure Bi samples treated under high pressure and high temperature conditions. Three structures with atomic positions close to those of the A7 structure have been identified through first-principles calculations, showing these polytypes energetically comparable to the A7 structure under ambient condition. Simulated diffraction data are in excellent agreement with the experimental observations. We argue that previously reported some variations of physical properties (e.g., density, electrical conductivity, and magnetism) in bismuth could be due to the formation of these polytypes. The coexistence of metastable derivative structural polytypes may be a widely occurring phenomenon in other elemental materials.

SUBMITTER: Shu Y 

PROVIDER: S-EPMC4756663 | biostudies-literature | 2016 Feb

REPOSITORIES: biostudies-literature

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Coexistence of multiple metastable polytypes in rhombohedral bismuth.

Shu Yu Y   Hu Wentao W   Liu Zhongyuan Z   Shen Guoyin G   Xu Bo B   Zhao Zhisheng Z   He Julong J   Wang Yanbin Y   Tian Yongjun Y   Yu Dongli D  

Scientific reports 20160217


Derivative structural polytypes coexisting with the rhombohedral A7 structure of elemental bismuth (Bi) have been discovered at ambient condition, based on microstructure analyses of pure Bi samples treated under high pressure and high temperature conditions. Three structures with atomic positions close to those of the A7 structure have been identified through first-principles calculations, showing these polytypes energetically comparable to the A7 structure under ambient condition. Simulated di  ...[more]

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