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Understanding Strain‐Induced Phase Transformations in BiFeO3 Thin Films

机译:了解BiFeO3薄膜中的应变诱导相变

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摘要

Experiments demonstrate that under large epitaxial strain a coexisting striped phase emerges in BiFeO3 thin films, which comprises a tetragonal‐like (T′) and an intermediate S′ polymorph. It exhibits a relatively large piezoelectric response when switching between the coexisting phase and a uniform T′ phase. This strain‐induced phase transformation is investigated through a synergistic combination of first‐principles theory and experiments. The results show that the S′ phase is energetically very close to the T′ phase, but is structurally similar to the bulk rhombohedral (R) phase. By fully characterizing the intermediate S′ polymorph, it is demonstrated that the flat energy landscape resulting in the absence of an energy barrier between the T′ and S′ phases fosters the above‐mentioned reversible phase transformation. This ability to readily transform between the S′ and T′ polymorphs, which have very different octahedral rotation patterns and c/a ratios, is crucial to the enhanced piezoelectricity in strained BiFeO3 films. Additionally, a blueshift in the band gap when moving from R to S′ to T′ is observed. These results emphasize the importance of strain engineering for tuning electromechanical responses or, creating unique energy harvesting photonic structures, in oxide thin film architectures.
机译:实验表明,在较大的外延应变下,BiFeO3薄膜中出现了共存的条纹相,该条纹相由四方形(T')和中间的S'多晶型物组成。当在共存相和均匀T'相之间切换时,它表现出相对较大的压电响应。通过第一原理理论和实验的协同结合,研究了这种应变诱导的相变。结果表明,S'相在能量上非常接近T'相,但在结构上类似于块体菱形(R)相。通过充分表征中间S'的多晶型,可以证明导致T'和S'相之间不存在能垒的平坦能量格局促进了上述可逆相变。具有八面体旋转模式和c / a比非常不同的S'和T'多晶型物之间轻松转换的能力对于应变BiFeO3薄膜中增强的压电性至关重要。另外,当从R到S'到T'移动时,观察到带隙蓝移。这些结果强调了应变工程对于调节机电响应或在氧化物薄膜架构中创建独特的能量收集光子结构的重要性。

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