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Barium titanate(IV)

Catalog Number
ACM12047277-11
Product Name
Barium titanate(IV)
Structure
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CAS
12047-27-7
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Synonyms
Titanium barium oxide
IUPAC Name
barium(2+);dioxido(oxo)titanium
Molecular Weight
233.19g/mol
Molecular Formula
BaTiO3;BaO3Ti
Canonical SMILES
[O-][Ti](=O)[O-].[Ba+2]
InChI
InChI=1S/Ba.3O.Ti/q+2;;2*-1;
InChI Key
WNKMTAQXMLAYHX-UHFFFAOYSA-N
Storage
Storage temperature: no restrictions.
Complexity
18.8
Covalently-Bonded Unit Count
2
Exact Mass
233.837932g/mol
Formal Charge
0
H-Bond Acceptor
3
H-Bond Donor
0
Heavy Atom Count
5
MeSH Entry Terms
barium titanate (BaTiO3);barium titanate(IV);barium titanate(IV), ion (2-)
Monoisotopic Mass
233.837932g/mol
Rotatable Bond Count
0
Application
Barium titanate(IV) serves as a highly versatile electroceramic material, renowned for its significant ferroelectric, dielectric, and piezoelectric properties. Its structure enables it to function efficiently as a semiconductor with a positive temperature coefficient of resistivity, making it invaluable in the manufacture of ceramic capacitors and various electrical devices such as actuators and sensors. This material, which appears as a white crystalline solid, also exhibits a remarkable dielectric constant, about 1,000 times greater than that of water, and is stable in five distinct crystalline phases, each suited to specific temperature ranges. Widely used in dielectric and magnetic amplifiers, memory devices, and a host of electronic equipment like digital calculators, radios, and sonar systems, barium titanate(IV) is synthesized through the reaction of titanium oxide and barium salts in the presence of oleic acid. It not only offers critical applications in a range of electronic devices but also can form intensely photoluminescent films for broader electronic applications, which underscores its versatility and significance in modern technology.
December 14, 2024

Essential Electroceramic with Versatile Applications

Used Barium titanate(IV) for its ferroelectric properties in capacitor research; excellent results. Its easy application in dielectric amplifiers made our research efficient. Highly recommend for industrial electronics research.

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