Bismuth Iron Titanium Oxide powder is a multiferroic material that combines ferroelectricity and magnetism. It is particularly suitable for thin film deposition and functional device development in the fields of ferroelectricity, piezoelectricity and magnetoelectric coupling. The material has a stable structure, high purity and controllable particle size, which can meet the various needs of high-end scientific research and industrial applications.
We provide Bismuth Iron Titanium Oxide powder in a variety of particle size ranges, support customized packaging, and can adjust the stoichiometric ratio or provide exclusive formulas according to your specific application needs. At the same time, we provide comprehensive technical support and after-sales service – if you have any questions, please feel free to contact us.
Purity: 99.95%
Average particle size: customizable
Multiferroic: ferroelectric and weakly magnetic at the same time
Customizable packaging
Widely used, suitable for a variety of thin film deposition technologies (PLD, sputtering, CVD, etc.)
Ferroelectric memory (FeRAM): As an active ferroelectric layer material, it realizes low power consumption and high-speed non-volatile storage.
Piezoelectric sensors and actuators: With excellent piezoelectric response, suitable for micro-electromechanical systems (MEMS) and acoustic devices.
Magnetoelectric coupling devices: Realize the coupling conversion between magnetic field and electric field, and develop new magnetoelectric modulation elements.
Photoelectric and photocatalytic materials: With photoelectric conversion ability under visible light response, used in environmental catalysis and energy conversion applications.
We provide detailed certificates of analysis (COA), material safety data sheets (MSDS) and particle size/phase structure test reports for each batch of Bismuth Iron Titanium Oxide powder. We also support third-party independent testing services to provide you with higher standards of quality assurance.
Molecular formula: BiFeTiO₃
Molecular weight: about 400.7 g/mol
Appearance: light yellow to brown powder, uniform particle size
Density: about 7.8 g/cm³
Melting point: about 900–1,000 °C (sintering temperature range)
Crystal structure: perovskite structure
Inner Packaging: Vacuum-sealed bags and boxed to prevent contamination and moisture.
Outer Packaging: Cartons or wooden crates selected based on size and weight.
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