4.8 Article

Super-elastic ferroelectric single-crystal membrane with continuous electric dipole rotation

期刊

SCIENCE
卷 366, 期 6464, 页码 475-+

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aay7221

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资金

  1. National Key R&D Program of China [2018YFB 0407601]
  2. Natural Science Foundation of China [11534015, 51602244, 51802248, 11574246, 51931004, 51621603, 51788104, 11374010, 11675179]
  3. National 111 Project of China [B14040]
  4. National Key RD program [2016YFA0300102]
  5. National Key Research and Development Program of China [2016YFA0201001]
  6. Natural Sciences and Engineering Research Council of Canada [203773]

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Ferroelectrics are usually inflexible oxides that undergo brittle deformation. We synthesized freestanding single-crystalline ferroelectric barium titanate (BaTiO3) membranes with a damage-free lifting-off process. Our BaTiO3 membranes can undergo a similar to 180 degrees folding during an in situ bending test, demonstrating a super-elasticity and ultraflexibility. We found that the origin of the super-elasticity was from the dynamic evolution of ferroelectric nanodomains. High stresses modulate the energy landscape markedly and allow the dipoles to rotate continuously between the a and c nanodomains. A continuous transition zone is formed to accommodate the variant strain and avoid high mismatch stress that usually causes fracture. The phenomenon should be possible in other ferroelectrics systems through domain engineering. The ultraflexible epitaxial ferroelectric membranes could enable many applications such as flexible sensors, memories, and electronic skins.

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