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Specifications of Titanium tetrafluoride丨CAS 7783-63-3
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TiF4 |
98.5% min |
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Heavy metals |
0.1% max |
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Cl |
0.15% max |
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Fluorosilicate |
0.2% max |
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Fe |
0.1% max |
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SO4 |
0.1% max |
Transport Information of Titanium tetrafluoride丨CAS 7783-63-3
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Parameter |
Specification |
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UN Number |
3260 |
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Class |
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Packing Group |
II |
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H.S. Code |
2812901990305 |
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Stability & Reactivity |
The product is chemically stable under standard ambient conditions. |
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Storage |
Tightly closed. Dry. Moisture sensitive. Do not store in glass |
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Condition to Avoid |
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Package |
Manufacturing Information of Titanium tetrafluoride丨CAS 7783-63-3
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Parameter |
Specification |
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Capacity |
500kg/month |
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Frequency |
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Main Export Countries |
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Capacity/Batch |
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Experience |
Production since 2014 |
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Stock |
Chemical Overview
Titanium tetrafluoride丨CAS 7783-63-3 is a highly reactive inorganic fluoride compound, primarily used in chemical synthesis, surface treatment, and dental applications.
Applications
1. Dental Care and Fluoride Treatments
Used in professional dental treatments for enamel remineralization and cavity prevention.
Reacts with hydroxyapatite in tooth enamel to form fluoridated protective layers and titanium-containing complexes that resist acid attack.
Occasionally used in desensitizing agents for sensitive teeth due to its sealing effects on dentinal tubules.
2. Surface Treatment and Coating Chemistry
Acts as a surface modifier for glass, ceramics, and metal oxides, improving adhesion, durability, or optical properties.
Can deposit thin titanium-based films in chemical vapor deposition (CVD) processes for electronics or optical components.
3. Chemical Synthesis
Used as a fluorinating agent or Lewis acid catalyst in organofluorine chemistry and halogen exchange reactions.
Functions in the synthesis of metal fluorides and fluoro-complexes for inorganic materials and catalysis research.
4. Optical and Electronic Applications
Precursor for titanium fluoride coatings with UV-reflective or anti-reflective properties.
May be used in dielectric layers or capacitor materials in advanced electronics.
5. Analytical Chemistry
Used in sample preparation and digestion procedures for trace metal analysis.
Acts as a complexing agent to solubilize titanium or other metals during analysis.
Benefits
1. High Reactivity for Functional Surface Modification
Strong affinity for metal oxides, enabling stable chemical bonds in surface treatments.
Ideal for creating durable, chemically resistant coatings on a variety of substrates.
2. Effective Fluoride Delivery
Provides high fluoride bioavailability, contributing to enamel protection and caries prevention in dental products.
Forms insoluble fluorotitanate layers that are less prone to leaching than other fluoride sources.
3. Catalytic Potential
Functions as a Lewis acid in various organic and inorganic reactions.
Its ability to coordinate with electron-rich species makes it useful in fluorination and substitution reactions.
4. Utility in Advanced Materials
Enables production of fluoride-based optical coatings, offering thermal and chemical stability in demanding environments.
Important in research into fluorine-containing ceramics, glasses, and battery materials.
5. Compact Source of Titanium and Fluorine
Serves as a dual-source reagent, useful for introducing both Ti and F elements in chemical or material syntheses.
Conclusion
Titanium tetrafluoride丨CAS 7783-63-3 is a versatile fluoride compound used in dental care, surface modification, catalysis, and optical material development. Its unique chemical reactivity allows it to form strong protective layers, participate in complex fluorination reactions, and enhance the performance of high-tech coatings. While potent and effective, it requires careful handling due to its corrosivity and reactivity with moisture-making it a compound for specialized industrial and scientific applications.

