Bismuth Ferrite Nanoparticles/ Nanopowder provided by Stanford Advanced Materials are advanced materials with both ferroelectric and magnetic properties at the nanoscale, making them ideal for applications in high-performance sensors, memory devices, and energy conversion technologies.
Related Products: Bismuth Ferrite Powder, Bismuth Antimony Telluride Powder
Bismuth Ferrite Nanoparticles/ Nanopowder provided by Stanford Advanced Materials are advanced materials with both ferroelectric and magnetic properties at the nanoscale, making them ideal for applications in high-performance sensors, memory devices, and energy conversion technologies.
Related Products: Bismuth Ferrite Powder, Bismuth Antimony Telluride Powder
Bismuth ferrite nanoparticles/nanopowders are one of the unique combinations of magnetic and ferroelectric properties at a nanoscale level. The nanoparticles have a perovskite structure capable of carrying large electric polarization and magnetic ordering at the nanoscale, properties relevant to multiferroic applications. They show nice properties in different applications since their small size results in an increased surface effect and high surface-to-volume ratio. Their high Curie temperature ensures them with stability and functional capability over a wide range of environments. Bismuth ferrite nanoparticles present huge magnetoelectric coupling and offer advanced applications in spintronics, sensors, and energy conversion devices. The strength of such materials is their ability to change both electric and magnetic fields and thus find applications in developing next-generation electronic and photonic technologies.
Nominal Chemistry |
BiFeO3 |
CAS No |
12010-42-3 |
Purity |
99.9% |
APS |
<100nm (Can be Customized) |
Appearance |
Crystalline solid |
Melting Point |
1255 °C |
Density |
8.22 g/cm3 |
Crystal Phase / Structure |
Perovskite |
Molecular Weight |
312.82 g/mol |
Solubility |
Insoluble |
InChI Key |
UKOQHRZDRNXQCP-UHFFFAOYSA-N |
1. Spintronics: Used in spintronic devices for controlling and manipulating electron spin through electric fields, enabling the development of faster and more efficient memory and logic components.
2. Non-Volatile Memory: Integrated into ferroelectric random-access memory and other non-volatile memory devices, using the functionality to retain data without power.
3. Sensors: They find application in high-sensitivity sensors, which detect magnetic and electrical fields with double functionality that allows attaining precise measurements in a number of applications.
4. Energy Conversion: The demand exists in devices of energy conversion technology like photovoltaic devices where their unique properties enhance the efficiency in light to electrical energy conversion.
5. Electromagnetic Devices: Applied in state-of-the-art electromagnetic devices for tuning and controlling electromagnetic waves, improving the performance of filters, antennas, and other communication components.
Signal |
Our Bismuth Ferrite Nanoparticles / Nanopowder is meticulously packaged to prevent any degradation during storage and transportation in order to retain the high quality of our product in its original form.
Q1: What is the normal size range of Bismuth Ferrite Nanoparticles?
A1: The diameter of Bismuth Ferrite Nanoparticles ranges from 10 nanometers to 100 nanometers. Customer orders requiring specific size ranges are possible dependent on the application.
Q2: What is the storage method that has to be followed to ensure stability in Bismuth Ferrite Nanoparticles?
A2: The nanoparticle should be stored in a dust-free, cool, dry place in a tightly sealed container. Handling the material very carefully will protect it from moisture and other contaminants. Proper storage conditions will aid in the maintenance of the properties and performance of the particles.
Q3: Are Bismuth Ferrite Nanoparticles customizable?
A3: Yes, we can offer a number of customization options, such as particle size adjustment, doping, or surface treatment, all tailored to your particular research or industrial needs. Kindly reach out to us for discussion of your requirements.