Low-Symmetry Monoclinic Phases and Polarization Rotation Path Mediated By Epitaxial Strain in Multiferroic BiFeO3 Thin Films
Zuhuang Chen, Zhenlin Luo, Chuanwei Huang, Yajun Qi, Ping Yang, Lu, You, Chuansheng Hu, Tom Wu, Junling Wang, Chen Gao, Thirumany Sritharan, and, Lang Chen

TL;DR
This study identifies a monoclinic MC phase in epitaxial BiFeO3 thin films, revealing polarization rotation paths and strain-induced phase transitions that enhance multiferroic properties.
Contribution
It uncovers a new monoclinic MC phase in BiFeO3 films on LaAlO3, differing from previous phases, and explains its formation and implications for piezoelectric response.
Findings
Identification of monoclinic MC phase via synchrotron x-ray and microscopy
Polarization vectors lie in the (100) plane, not (110)
Linkage between MC and MA phases suggests polarization rotation pathways
Abstract
A morphotropic phase boundary driven by epitaxial strain has been observed in a lead-free multiferroic BiFeO3 thin films and the strain-driven phase transitions were widely reported to be iso-symmetric Cc-Cc ones by recent works. In this paper, we suggest that the tetragonal-like BiFeO3 phase identified in epitaxial films on (001) LaAlO3 single crystal substrates is monoclinic MC. This MC phase is different from MA type monoclinic phase reported in BiFeO3 films grown on low mismatch substrates, such as SrTiO3. This is confirmed not only by synchrotron x-ray studies but also by piezoresponse force microscopy measurements. The polarization vectors of the tetragonal-like phase lie in the (100) plane, not the (110) plane as previously reported. A phenomenological analysis was proposed to explain the formation of MC Phase. Such a low symmetry MC phase, with its linkage to MA phase and the…
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