Please use this identifier to cite or link to this item: https://doi.org/10.1038/s41467-018-03250-8
Title: Precipitation of binary quasicrystals along dislocations
Authors: Yang, Z
Zhang, L
Chisholm, M.F
Zhou, X
Ye, H
Pennycook, S.J 
Keywords: alloy
magnesium
zinc
alloy
crystal structure
crystallinity
dislocation
precipitation (chemistry)
Article
atom
compression
crystallization
energy dispersive X ray spectroscopy
entropy
hardness
molecular dynamics
precipitation
scanning transmission electron microscopy
strength
Issue Date: 2018
Publisher: Nature Publishing Group
Citation: Yang, Z, Zhang, L, Chisholm, M.F, Zhou, X, Ye, H, Pennycook, S.J (2018). Precipitation of binary quasicrystals along dislocations. Nature Communications 9 (1) : 809. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-018-03250-8
Rights: Attribution 4.0 International
Abstract: Dislocations in crystals naturally break the symmetry of the bulk, introducing local atomic configurations with symmetries such as fivefold rings. But dislocations do not usually nucleate aperiodic structure along their length. Here we demonstrate the formation of extended binary quasicrystalline precipitates with Penrose-like random-tiling structures, beginning with chemical ordering within the pentagonal structure at cores of prismatic dislocations in Mg-Zn alloys. Atomic resolution observations indicate that icosahedral chains centered along [0001] pillars of Zn interstitial atoms are formed templated by the fivefold rings at dislocation cores. They subsequently form columns of rhombic and elongated hexagonal tiles parallel to the dislocation lines. Quasicrystalline precipitates are formed by random tiling of these rhombic and hexagonal tiles. Such precipitation may impact dislocation glide and alloy strength. © 2018 The Author(s).
Source Title: Nature Communications
URI: https://scholarbank.nus.edu.sg/handle/10635/178427
ISSN: 2041-1723
DOI: 10.1038/s41467-018-03250-8
Rights: Attribution 4.0 International
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