Description
Barium Titanate (BaTiO₃) Nanopowder / Nanoparticles (99.95%, 370 nm, Tetragonal)
Barium Titanate (BaTiO₃) nanoparticles are high-performance ceramic nanomaterials with exceptional dielectric, piezoelectric, and optical properties. Produced with 99.95% purity, an average particle size of 370 nm, and a stable tetragonal crystal structure, BaTiO₃ nanoparticles are a key material in advanced electronics, capacitors, and optoelectronics. Their high dielectric constant, ferroelectric nature, and tunable optical behavior make them ideal for both industrial production and research-level applications.
Technical Properties
Chemical Formula: BaTiO₃
Purity: 99.95%
Color: White
Average Particle Size (APS): 370 nm
Specific Surface Area: 2.80 m²/g
True Density: 5.90 g/cm³
Crystallinity: Tetragonal
Morphology: Spherical
Ba/Ti Ratio: 1.00
Elemental Analysis (wt%)
Element | Na | Ca | Fe | K | Mg | Sr |
---|---|---|---|---|---|---|
Value | 0.001 | 0.001 | 0.001 | 0.001 | 0.001 | 0.019 |
Applications
Barium Titanate Nanoparticles are widely applied across electronics, photonics, and sensor technologies, thanks to their multifunctional dielectric, ferroelectric, and piezoelectric properties:
Optical Data Storage: Enables high-density optical data storage for next-generation computing.
Optical Computing & Imaging: Used in optical image processing and pattern recognition systems.
Piezoelectric Devices: Key material in actuators, sensors, and energy harvesters.
Pyroelectric Sensors: Suitable for infrared detection and thermal sensors.
Lasers & Nonlinear Optics: Enhances performance in laser technology and nonlinear optical devices.
Micro-Capacitors & Dielectric Amplifiers: Core material in miniaturized capacitors, dielectric amplifiers, and multilayer ceramic capacitors (MLCCs).
Advanced Optoelectronic Applications: Widely used in telecommunication systems, photonics, and optoelectronic circuits.
Safety & Handling
Handle under protective conditions; avoid inhalation and ingestion.
Store in a sealed container, away from humidity and direct sunlight.