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Barium Titanate
Barium Titanate

Barium Titanate

MOQ : 1 Kilograms

Barium Titanate Specification

  • Solubility
  • Insoluble in water, slightly soluble in acids
  • Poisonous
  • Not classified as poisonous but toxic if ingested
  • Application
  • Capacitors, sensors, piezoelectric devices, multilayer ceramics, transducers
  • Structural Formula
  • Orthorhombic crystal structure
  • Physical Form
  • Powder
  • Ingredients
  • Barium Oxide, Titanium Dioxide
  • Molecular Weight
  • 233.19 g/mol
  • Melting Point
  • 1625 C
  • Storage
  • Store in a cool, dry, and well-ventilated area away from moisture
  • Purity
  • 99%
  • CAS No
  • 12047-27-7
  • Density
  • 6.02 Gram per cubic centimeter(g/cm3)
  • Product Type
  • Inorganic Compound
  • Ph Level
  • 7.0 (neutral)
  • Appearance
  • White powder
  • Usage
  • Used in electronic components and devices requiring ferroelectric or piezoelectric properties
  • EINECS No
  • 234-498-2
  • Properties
  • High dielectric constant, ferroelectric material, piezoelectric properties, insoluble in water
  • Taste
  • Odourless, tasteless
  • HS Code
  • 282610
  • Molecular Formula
  • BaTiO3
  • Shelf Life
  • Stable under recommended storage conditions
  • Shape
  • Crystalline
  • Smell
  • Odourless
  • Refractive Rate
  • 2.42
  • Grade
  • Electronic Grade
 

Barium Titanate Trade Information

  • Minimum Order Quantity
  • 1 Kilograms
  • Supply Ability
  • 1 Kilograms Per Week
  • Delivery Time
  • 1 Week
 

About Barium Titanate

Barium Titanate

Formula : BaTiO3

CAS No.: 12047-27-7

BaO / TiO2 (Mol Ratio) : 1.0000.01

SrO (wt%) : 0.05  

K2O + Na2O (wt%): 0.01

Fe2O3 (wt%) : 0.01

Al2O3 (wt%): 0.1

SiO2 (wt%) : 0.1


Engineered for Electronics Innovation

Barium Titanates submicron-to-micron particle size and high specific surface area allow for precise integration into advanced electronics. As a ferroelectric and piezoelectric material, it is pivotal in capacitors, sensors, and multilayer ceramic components, driving enhancements in performance and miniaturization across the electronics industry. Its lead-free formula also aligns with environmental safety standards.


Exceptional Performance and Reliability

Offering excellent electrical insulating properties and remarkable thermal stability, Barium Titanate ensures dependable operation under a variety of environmental conditions. Its orthorhombic perovskite crystal structure and superior purity (99%) further contribute to enduring performance and high efficiency in high-frequency and high-voltage applications.

FAQs of Barium Titanate:


Q: How should Barium Titanate powder be safely handled and stored?

A: Always handle Barium Titanate powder in a well-ventilated area and avoid inhalation or skin contact, as it may cause irritation. Store in sealed, moisture-resistant containers in cool, dry, and well-ventilated environments to maintain its quality and ensure a long shelf life.

Q: What applications benefit from the use of Barium Titanate?

A: Barium Titanate is widely used in electronic components like capacitors, multilayer ceramics, sensors, piezoelectric devices, and transducers due to its high dielectric constant and excellent ferroelectric and piezoelectric properties.

Q: When is Barium Titanate preferred over other dielectric materials?

A: Barium Titanate is preferred when a high dielectric constant, lead-free composition, and reliable ferroelectric or piezoelectric performance are required, especially in the production of miniaturized and high-performance electronic devices.

Q: Where does Barium Titanates electrical insulation property make a significant impact?

A: Its outstanding electrical insulation makes Barium Titanate essential in capacitors and multilayer ceramic devices, where leakage prevention and efficient energy storage are crucial for electronic circuits.

Q: What is the benefit of using lead-free Barium Titanate in electronic manufacturing?

A: Lead-free Barium Titanate enhances product safety and complies with environmental regulations such as RoHS, minimizing hazardous impacts and fostering safer electronic goods.

Q: How is Barium Titanate typically processed for use in electronic components?

A: The powder is usually compacted and sintered to form dense ceramics, or integrated into multilayer arrangements where its fine particle size and crystallinity ensure homogeneity and optimal electrical performance.

Q: What precautions are necessary when using Barium Titanate given its hazard statements?

A: Use personal protective equipment and work in ventilated settings to avoid inhalation or skin contact, as Barium Titanate may be harmful if inhaled and can cause irritation. Always follow appropriate occupational safety standards.

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