Logo image
Nondestructive Mapping of Long-Range Dislocation Strain Fields in an Epitaxial Complex Metal Oxide
期刊文章   同儕審查

Nondestructive Mapping of Long-Range Dislocation Strain Fields in an Epitaxial Complex Metal Oxide

Hugh Simons, Anders Clemen Jakobsen, Sonja Rosenlund Ahl, Henning Friis Poulsen, Wolfgang Pantleon, Ying-Hao Chu, Carsten DetlefsNagarajan Valanoor
Nano Letters, 卷.19(3), 頁碼.1445-1450
03/2019
PMID: 30724569

摘要

BiFeO3 diffraction dislocation Ferroelectric microscopy strain Bioengineering Chemistry (all) Materials Science (all) Condensed Matter Physics Mechanical Engineering
The misfit dislocations formed at heteroepitaxial interfaces create long-ranging strain fields in addition to the epitaxial strain. For systems with strong lattice coupling, such as ferroic oxides, this results in unpredictable and potentially debilitating functionality and device performance. In this work, we use dark-field X-ray microscopy to map the lattice distortions around misfit dislocations in an epitaxial film of bismuth ferrite (BiFeO 3 ), a well-known multiferroic. We demonstrate the ability to precisely quantify weak, long-ranging strain fields and their associated symmetry lowering without modifying the mechanical state of the film. We isolate the screw and edge components of the individual dislocations and show how they result in weak charge heterogeneities via flexoelectric coupling. We show that even systems with small lattice mismatches and additional mechanisms of stress relief (such as mechanical twinning) may still give rise to measurable charge and strain heterogeneities that extend over mesoscopic length scales. This sets more stringent physical limitations on device size, dislocation density, and the achievable degree of lattice mismatch in epitaxial systems.

相關連結

指標

1 檢視次數

詳細資料

Logo image