About Bismuth Titanate
Bismuth Titanate
Formula : Bi12O20Ti
CAS No.: 234-986-0
Appearance : Yellow or orange color
Bi2O3 : Adjustable
TiO2 : Adjustable
Na2O-K2O : 0.01%
PbO : 0.01%
Fe2O3 : 0.01%
SiO2 : 0.01%
H2O : 0.3% Superior Material for Advanced ElectronicsBismuth Titanate excels in manufacturing electronic ceramics, multilayer capacitors, piezoelectric devices, and sensors thanks to its high dielectric constant, superior ferroelectric and piezoelectric properties, and exceptional thermal stability. Its orthorhombic crystal structure and fine particle size enhance performance in precision electronic components.
Safe, Stable, and Environmentally ResponsibleThis compound is categorized as non-hazardous and non-toxic, featuring excellent stability under standard conditions and compliance with strict environmental standards. Being lead-free, it serves as a sustainable alternative in electronics manufacture. HDPE packaging ensures safety, and customizable options cater to diverse industry needs.
Versatile Uses and Long Shelf LifeDesigned for industrial and research applications, Bismuth Titanate stays effective for up to 24 months when stored properly. Its high purity and excellent thermal and electrical characteristics make it indispensable for traders, manufacturers, and researchers dealing with advanced ceramics and electronic devices.
FAQs of Bismuth Titanate:
Q: How should Bismuth Titanate powder be stored for optimal shelf life?
A: Bismuth Titanate should be kept in a tightly sealed container, placed in a cool, dry, well-ventilated area. Proper storage ensures product integrity and extends its shelf life up to 24 months.
Q: What are the main applications and benefits of using Bismuth Titanate?
A: This material is primarily used in electronic ceramics, multilayer capacitors, piezoelectric devices, and sensors. Its high dielectric constant, ferroelectric behavior, and thermal stability make it ideal for developing advanced electronic components and serve as a reliable, lead-free alternative.
Q: When does Bismuth Titanate undergo its ferroelectric phase transition?
A: Bismuth Titanate undergoes a ferroelectric phase transition at approximately 675K, allowing it to maintain stable ferroelectric properties at relatively high temperatures.
Q: Where can Bismuth Titanate be utilized in research and manufacturing?
A: It is widely used in laboratories for research, as well as in the manufacturing of electronic components, ceramics, and sensors. Its adaptability also extends to traders, importers, and exporters needing high-purity advanced materials.
Q: What is the recommended process for handling Bismuth Titanate safely?
A: Under normal handling conditions, Bismuth Titanate is considered non-hazardous. However, standard laboratory practices, such as wearing protective clothing and avoiding the generation of airborne dust, are advisable to maintain cleanliness and safety.
Q: How does Bismuth Titanate benefit the environment compared to similar materials?
A: As a lead-free and non-toxic compound, Bismuth Titanate offers an environmentally friendly alternative to traditional materials used in electronics, reducing ecological and health concerns associated with hazardous substances.