Photostrictive actuators based on freestanding ferroelectric membranes
arXiv:2305.03193 · doi:10.1002/adma.202310198
Abstract
Complex oxides offer a wide range of functional properties, and recent advances in fabrication of freestanding membranes of these oxides are adding new mechanical degrees of freedom to this already rich functional ecosystem. Here, we demonstrate photoactuation in freestanding thin film resonators of ferroelectric Barium Titanate (BaTiO3) and paraelectric Strontium Titanate (SrTiO3). The free-standing films, transferred onto perforated supports, act as nano-drums, oscillating at their natural resonance frequency when illuminated by a frequency-modulated laser. The light-induced deflections in the ferroelectric BaTiO3 membranes are two orders of magnitude larger than in the paraelectric SrTiO3 ones. Time-resolved X-ray micro-diffraction under illumination and temperature-dependent and holographic interferometry provide combined evidence for the photostrictive strain in BaTiO3 originating from partial screening of ferroelectric polarization by photo-excited carriers, which decreases the tetragonality of the unit cell. These findings showcase the potential of photostrictive freestanding ferroelectric films as wireless actuators operated by light.
References in corpus (6)
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- Light-induced size changes in BiFeO3 crystals
- Photostrictive materials
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Cited by in corpus (5)
- Recent Advances in Unconventional Ferroelectrics and Multiferroics
- Ultrafast decoupling of polarization and strain in ferroelectric BaTiO
- Hierarchical domain structures in buckled ferroelectric free sheets
- Oxide Membranes from Bulk Micro-Machining of SrTiO substrates
- Beware of the water: Hidden hydrogenation of perovskite membranes made by the water-soluble sacrificial layer method