Tailoring at will polar textures in ferroelectrics is critical for the development of nanoscale electronics and functional oxide technologies. Freestanding ferroelectric membranes have enabled studies of strain-induced polarization responses, but the control over membrane shape and local polarization typically remains limited to spontaneous buckling or uniaxial mechanical deformations. In this work, we employ a versatile photosensitive-polymer patterning approach to impose programmable bending strain profiles in ferroelectric membranes. Using BaTiO3 as a model system, we demonstrate deterministic 90° polarization rotation driven by engineered in-plane strain, and 180° polarization reversal arising from flexoelectric coupling through a controlled strain gradient. These results establish this programmable bending as a powerful approach to investigate strain-dependent domain structures, leverage flexoelectric effects, and engineer custom ferroelectric landscapes across a wide range of oxide membranes.
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Degezelle et al. (Thu,) studied this question.
synapsesocial.com/papers/69db36a04fe01fead37c4a2e — DOI: https://doi.org/10.1021/acsami.5c24848
Alban Degezelle
Université Paris-Saclay
Jonas Strobelt
University of Potsdam
Sarah Loebner
University of Potsdam
ACS Applied Materials & Interfaces
Centre National de la Recherche Scientifique
Université Paris-Saclay
University of Potsdam
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