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Self-Assembled Ferroelectric Nanoarray
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Self-Assembled Ferroelectric Nanoarray

Jie Jiang, Qiong Yang, Yi Zhang, Xiao-Yu Li, Pao-Wen Shao, Ying-Hui Hsieh, Heng-Jui Liu, Qiang-Xiang Peng, Gao-Kuo Zhong, Xiao-Qing Pan, …
ACS Applied Materials and Interfaces, 卷.11(2), 頁碼.2205-2210
01/2019
PMID: 30408951

摘要

CeO 2 -BFO ferroelectric array ferroelectric properties formation energy of the interface self-assembly Materials Science (all)
Self-assembled heteroepitaxial nanostructures have played an important role for miniaturization of electronic devices, e.g., the ultrahigh density ferroelectric memories, and cause for great concern. Our first principle calculations predict that the materials with low formation energy of the interface (E f ) tend to form matrix structure in self-assembled heteroepitaxial nanostructures, whereas those with high E f form nanopillars. Under the guidance of the theoretical modeling, perovskite BiFeO 3 (BFO) nanopillars are swimmingly grown into CeO 2 matrix on single-crystal (001)-SrTiO 3 (STO) substrates by pulsed laser deposition, where CeO 2 has a lower formation energy of the interface (E f ) than BFO. This work provides a good paradigm for controlling self-assembled nanostructures as well as the application of self-assembled ferroelectric nanoscale memory.

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