Atomic-scale phase separation induced clustering of solute atoms

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作者
Lianfeng Zou
Penghui Cao
Yinkai Lei
Dmitri Zakharov
Xianhu Sun
Stephen D. House
Langli Luo
Jonathan Li
Yang Yang
Qiyue Yin
Xiaobo Chen
Chaoran Li
Hailang Qin
Eric A. Stach
Judith C. Yang
Guofeng Wang
Guangwen Zhou
机构
[1] State University of New York,Department of Mechanical Engineering & Materials Science and Engineering Program
[2] University of California,Department of Mechanical and Aerospace Engineering
[3] University of Pittsburgh,Department of Mechanical Engineering and Materials Science
[4] Brookhaven National Laboratory,Center for Functional Nanomaterials
[5] University of Pittsburgh,Department of Chemical and Petroleum Engineering
[6] University of Pittsburgh,Environmental TEM Catalysis Consortium (ECC)
[7] Massachusetts Institute of Technology,Department of Nuclear Science and Engineering
[8] University of Pennsylvania,Department of Materials Science and Engineering
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摘要
Dealloying typically occurs via the chemical dissolution of an alloy component through a corrosion process. In contrast, here we report an atomic-scale nonchemical dealloying process that results in the clustering of solute atoms. We show that the disparity in the adatom–substrate exchange barriers separate Cu adatoms from a Cu–Au mixture, leaving behind a fluid phase enriched with Au adatoms that subsequently aggregate into supported clusters. Using dynamic, atomic-scale electron microscopy observations and theoretical modeling, we delineate the atomic-scale mechanisms associated with the nucleation, rotation and amorphization–crystallization oscillations of the Au clusters. We expect broader applicability of the results because the phase separation process is dictated by the inherent asymmetric adatom-substrate exchange barriers for separating dissimilar atoms in multicomponent materials.
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