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Features
|
CAS No.: |
12055-24-2 |
|
Linear Formula: |
HfTiO4 |
|
Purity: |
≥99% |
|
Appearance: |
White to off-white powder |
πΉ Product Description
Hafnium Titanate (HfTiOβ) is a high-performance ceramic material known for its exceptional thermal stability, dielectric properties, and corrosion resistance. It is widely used in electronic components, thermal barrier coatings, and high-temperature structural materials. Due to its unique properties, Hafnium Titanate plays a critical role in advanced ceramics, aerospace applications, and energy storage technologies.
πΉ Features & Properties
β High Purity (≥99%) ensuring reliability in precision applications
β Exceptional Thermal Stability for use in high-temperature environments
β Superior Dielectric Properties making it suitable for electronic applications
β Corrosion & Oxidation Resistance extending the material's durability
β Low Thermal Conductivity for enhanced thermal insulation
β High Mechanical Strength making it ideal for structural applications
πΉ Applications & Related Industries
Hafnium Titanate is a valuable material in electronics, aerospace, and high-performance ceramics.
β‘ Electronic & Semiconductor Industry – Used in capacitors, dielectric materials, and insulating layers
π Aerospace & Thermal Coatings – Applied in high-temperature environments and thermal protection systems
π Advanced Ceramics & Structural Components – Utilized in wear-resistant and corrosion-resistant components
π Energy Storage & Catalysis – Plays a role in fuel cells and advanced energy materials
π¬ Optical & Photonic Applications – Used in specialized lenses and optical coatings
πΉ Synonyms & Alternative Names
Hafnium Titanium Oxide
Hf-Ti Oxide
Hafnium(IV) Titanate
πΉ Health & Safety Information
β Handling Precautions: Avoid inhalation and skin contact; use protective gear.
β Storage Conditions: Keep in a dry, well-sealed container away from moisture and contaminants.
β Reactivity: Stable under normal conditions but should be handled carefully in high-temperature applications.
πΉ Production Method & Equipment
Hafnium Titanate is synthesized through solid-state reaction and advanced ceramic processing techniques, ensuring high purity and uniform particle distribution.
πΉ Synthesis Process:
1οΈβ£ Selection of High-Purity Hafnium & Titanium Precursors
2οΈβ£ Controlled Solid-State Reaction or Sol-Gel Method
3οΈβ£ Calcination & Sintering at High Temperatures
4οΈβ£ Milling & Particle Size Refinement for improved material properties
5οΈβ£ Final Purification & Quality Testing
This advanced production process guarantees consistent quality, high purity, and excellent performance in demanding applications.
πΉ Size & Customization
β Standard Form: Fine white to off-white powder
β Custom Particle Size & Purity Levels available upon request
πΉ Certifications & Quality Assurance
β
ISO 9001 Certified Production
β
XRD & SEM Particle Characterization
β
ICP-MS Purity Analysis
πΉ Lead Time & Minimum Order Quantity (MOQ)
π
Lead Time: 2-4 weeks depending on order volume
π¦ MOQ: Available for research-scale to bulk industrial supply
πΉ FAQs (Frequently Asked Questions)
Q1: What are the primary uses of Hafnium Titanate?
β
Hafnium Titanate is mainly used in dielectrics, aerospace coatings, structural ceramics, and high-temperature insulation materials.
Q2: What is the melting point of Hafnium Titanate?
β
Hafnium Titanate exhibits high thermal stability, with a melting point exceeding 2000°C, making it ideal for extreme environments.
Q3: Is Hafnium Titanate electrically conductive?
β No, Hafnium Titanate has excellent dielectric properties, meaning it does not conduct electricity but serves as an effective insulator.
Q4: How should Hafnium Titanate be stored?
β Store in a sealed, dry container to prevent contamination and maintain purity.
πΉ How to Choose the Right Hafnium Titanate for Your Needs?
β For Electronics & Dielectrics: Opt for high-purity fine powder for enhanced performance
β For Aerospace & Thermal Applications: Select high-density, thermally stable grades
β For Energy Storage & Catalysis: Use optimized formulations for maximum efficiency
πΉ Product Standards
β Complies with industrial standards for ceramic materials and electronic applications
β Custom formulations available for specific high-tech applications
πΉ Product Specifications
| Parameter | Specification |
|---|---|
| Chemical Formula | HfTiOβ |
| Purity | ≥99% |
| Appearance | White to off-white powder |
| Thermal Stability | High |
| Electrical Conductivity | Low (Excellent dielectric properties) |
| Corrosion Resistance | Excellent |
πΉ Production & Quality Control
Our Hafnium Titanate undergoes rigorous quality control to ensure high purity, precise particle size, and exceptional material properties.
β
XRD Analysis for phase purity verification
β
SEM & Particle Size Distribution Testing
β
ICP-MS & XRF Purity Analysis
β
Dielectric & Thermal Property Evaluation
πΉ Shipping & Delivery Information
π¦ Packaging: Securely packed in sealed, moisture-resistant containers
π Delivery: Global shipping with safe handling procedures
π Worldwide Distribution Available
πΉ Environmental Impact & Sustainability
β» Eco-Friendly Production Process reducing industrial waste
β» Sustainable Sourcing of Raw Materials for responsible manufacturing
πΉ Maintenance & Care Instructions
β Store in dry, airtight containers to maintain purity
β Handle with appropriate protective equipment
β Avoid exposure to strong acids and bases
πΉ Differentiation Between Products
Our high-purity Hafnium Titanate is manufactured using cutting-edge ceramic processing techniques, ensuring exceptional dielectric, thermal, and mechanical properties for demanding applications.
π© Contact Us
For premium Hafnium Titanate (HfTiOβ) with high purity, request a custom quote today!
Chemical Identifiers
|
Linear Formula |
HfTiO4 |
|
MDL Number |
N/A |
|
EC No. |
235-014-8 |
|
Pubchem CID |
166054 |
|
IUPAC Name |
hafnium(4+); oxygen(2-); titanium(4+) |
|
SMILES |
[Hf+4].[Ti+4].[O-2].[O-2].[O-2].[O-2] |
|
InchI Identifier |
InChI=1S/Hf.4O.Ti/q+4;4*-2;+4 |
|
InchI Key |
KUVFGOLWQIXGBP-UHFFFAOYSA-N |
Hafnium Titanate Properties (Theoretical)
|
Compound Formula |
HfTiO4 |
|
Molecular Weight |
290.35 |
|
Appearance |
Crystalline |
|
Melting Point |
N/A |
|
Boiling Point |
N/A |
|
Density |
N/A |
|
Solubility in H2O |
N/A |
|
Exact Mass |
291.874155 |
|
Monoisotopic Mass |
291.874155 |
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