Calcium Titanate

Superior Dielectric Performance – Offers excellent dielectric properties, making it well suited for advanced ceramic capacitor materials.

Excellent Temperature Resistance – Maintains stable performance under high-temperature conditions and during temperature fluctuations.

High Mechanical Strength and Structural Stability – Provides good durability and structural integrity, supporting reliable performance during processing and practical use.

Outstanding Optical Characteristics – Exhibits favorable optical properties, enabling its application in precision electronic and optical components.

Product Description
Chemical Properties
Product Application

Product Description of CALCIUM TITANATE CAS#12049-50-2

Calcium titanate is an inorganic compound with the chemical formula CaTiO₃. It adopts a cubic crystal structure and is widely recognized as an important inorganic dielectric material due to its excellent dielectric, thermal, mechanical, and optical properties. It has broad applications in ceramic capacitors, PTC thermistors, microwave antenna components, filters, stainless steel welding electrodes, and other industrial and electronic applications.

Calcium Titanate

CALCIUM TITANATE Chemical Properties

Melting point 1975°C
density 4.1 g/mL at 25 °C (lit.)
form nanopowder
color Beige
Specific Gravity4.1
Water Solubility Insoluble in water. Soluble in oirganic and inorganic solution.
CAS DataBase Reference12049-50-2(CAS DataBase Reference)
EPA Substance Registry SystemCalcium titanium oxide (CaTiO3) (12049-50-2)
Calcium Titanate

Product Application of CALCIUM TITANATE CAS#12049-50-2

Calcium titanate is an important inorganic dielectric material recognized for its excellent dielectric, thermal, mechanical, and optical properties. It is widely used in ceramic capacitors, PTC thermistors, microwave antenna components, filters, stainless steel welding electrodes, and other applications. Perovskite is the naturally occurring mineral form of calcium titanate, and its characteristic crystal structure is also found in many other inorganic materials. A comprehensive understanding of the perovskite structure and its various structural modifications can provide valuable insights into the development and innovation of advanced inorganic functional materials.

Calcium titanate