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Description

Calcium Copper Titanate (CaCu₃Ti₄O₁₂, CCTO) Micron Powder

Purity: ≥ 99.5%
Average Particle Size (D50): 1–3 µm

Product Description

Calcium Copper Titanate (CaCu₃Ti₄O₁₂), commonly referred to as CCTO, is a ceramic oxide material known for its exceptionally high dielectric constant—exceeding 10,000 at room temperature. With a cubic crystal structure and excellent chemical stability, CCTO is widely researched and used in next-generation capacitive and energy storage systems.

The material’s unique dielectric properties are attributed to internal barrier layer mechanisms, making it especially valuable for dynamic random-access memory (DRAM) components, multilayer ceramic capacitors (MLCCs), embedded passive devices, and high-energy density capacitors.

Chemical & Physical Properties

Property Value
Chemical Formula CaCu₃Ti₄O₁₂
Appearance Brown solid powder
Density 4.7 g/cm³
Molar Mass 614.18 g/mol
Crystal Structure Cubic
Melting Point >1000 °C

Elemental Composition (Typical):

Component Content (wt%)
Purity (Total) ≥ 99.5%
Fe₂O₃ < 0.01%
SrO < 0.05%
Na₂O + K₂O < 0.01%
Al₂O₃ < 0.10%
SiO₂ < 0.10%
H₂O < 0.50%
Ignition Loss < 1.00%

Key Features

  • Ultra-high dielectric constant (εᵣ > 10,000 at RT)

  • High thermal and chemical stability

  • Cubic perovskite-like structure

  • Excellent electrical insulating properties

  • High purity and controlled particle size (1–3 µm D50)

  • Low ionic impurity content (Fe, Na, Sr, etc.)


Applications

CCTO Micron Powder is used in advanced ceramic, electronic, and energy storage technologies:

  • High Dielectric Ceramic Capacitors (MLCCs)

  • DRAM Modules and Embedded Passive Devices

  • Electroceramic Resistors

  • Next-Generation Energy Storage Devices

  • New Energy Battery Systems:

    • Lithium-ion, solid-state, and solar cell battery components

    • Battery separators and electrodes for electric vehicles

  • Photovoltaics and Solar Energy Systems

  • Functional Fillers in Polymers for Dielectric Enhancement

Additional information

Gram

25 g, 100 g, 500 g, 1000 g