Hexafluorozirconic acid is a chemical compound with the molecular formula H2ZrF6.
Hexafluorozirconic acid is an inorganic acid that is composed of zirconium (Zr) and fluorine (F) atoms.
Hexafluorozirconic acid is highly soluble in water and forms a colorless to pale yellow solution.
CAS Number: 12021-95-3
EC Number: 234-619-9
APPLICATIONS
Hexafluorozirconic acid is commonly used in metal surface treatment processes, such as etching, cleaning, and passivation.
Hexafluorozirconic acid finds application in the aerospace industry for surface preparation of metal components prior to coating or painting.
Hexafluorozirconic acid is used in the automotive industry for the removal of rust, scale, and oxide layers from metal surfaces.
Hexafluorozirconic acid is employed in the electronics industry for the cleaning and etching of printed circuit boards (PCBs) during the manufacturing process.
Hexafluorozirconic acid is used in the production of ceramic coatings, providing enhanced durability and corrosion resistance.
Hexafluorozirconic acid finds application in the manufacturing of refractory materials, ceramics, and glass.
Hexafluorozirconic acid is utilized as an additive in electrolytes for energy storage devices, such as batteries and fuel cells, to enhance their performance.
Hexafluorozirconic acid is employed in the production of zirconium-based catalysts for various organic reactions.
Hexafluorozirconic acid is used as a flux in soldering and brazing processes to facilitate the flow and adhesion of solder or brazing material.
Hexafluorozirconic acid is utilized in the production of specialty glasses with high refractive indices and optical properties.
Hexafluorozirconic acid finds application in the manufacturing of pigments and dyes, providing coloration and UV resistance.
Hexafluorozirconic acid is used in water treatment processes to adjust pH levels and aid in the removal of certain impurities.
Hexafluorozirconic acid is employed in the synthesis of zirconium compounds, such as zirconium dioxide (ZrO2).
Hexafluorozirconic acid is used as a raw material in the production of zirconium salts for various applications.
Hexafluorozirconic acid finds application in the production of high-quality ceramic tiles with enhanced strength and resistance properties.
Hexafluorozirconic acid is utilized in the fabrication of optical fibers for telecommunications and fiber-optic applications.
Hexafluorozirconic acid is used in the formulation of specialty coatings and paints for corrosion protection.
Hexafluorozirconic acid finds application in the manufacturing of dental ceramics and dental prosthetics.
Hexafluorozirconic acid is used in the production of abrasives and grinding materials for various industries.
Hexafluorozirconic acid is employed in the formulation of specialty adhesives and sealants.
Hexafluorozirconic acid is used as an intermediate in the synthesis of other zirconium compounds and complex materials.
Hexafluorozirconic acid finds application in the production of specialty ceramics, such as ceramic membranes and filters.
Hexafluorozirconic acid is utilized in the surface treatment of metal alloys to enhance their corrosion resistance.
Hexafluorozirconic acid is used in the formulation of specialty detergents and cleaning agents.
Hexafluorozirconic acid finds application in the preservation and restoration of historical metal artifacts and artworks.
Hexafluorozirconic acid is used in the manufacturing of electroplating solutions for metal finishing processes.
Hexafluorozirconic acid finds application in the production of corrosion-resistant coatings for metal surfaces, such as pipes and tanks.
Hexafluorozirconic acid is utilized in the formulation of specialty glass-cleaning solutions for optical lenses and glassware.
Hexafluorozirconic acid is employed in the treatment of aluminum surfaces to improve adhesion for subsequent processes.
Hexafluorozirconic acid finds application in the production of flame-retardant materials, such as fire-resistant coatings and textiles.
Hexafluorozirconic acid is used in the formulation of specialty paints and coatings for high-performance industrial applications.
Hexafluorozirconic acid is employed in the preparation of metal catalysts for chemical reactions and industrial processes.
Hexafluorozirconic acid finds application in the manufacturing of high-quality ceramic capacitors for electronic devices.
Hexafluorozirconic acid is used in the production of specialty ceramics for advanced structural and functional applications.
Hexafluorozirconic acid finds application in the formulation of specialty adhesives for high-strength bonding applications.
Hexafluorozirconic acid is utilized in the manufacturing of corrosion inhibitors for various metal surfaces and systems.
Hexafluorozirconic acid is employed in the production of dental materials, such as dental cements and dental restorations.
Hexafluorozirconic acid is used in the formulation of specialty metalworking fluids and cutting oils.
It finds application in the treatment of metal alloys for improved surface hardness and wear resistance.
The acid is employed in the production of heat-resistant materials, such as refractory bricks and liners.
Hexafluorozirconic acid finds application in the formulation of specialty coatings for solar panels and photovoltaic devices.
Hexafluorozirconic acid is used in the manufacturing of catalysts for selective hydrogenation reactions in the chemical industry.
Hexafluorozirconic acid is utilized in the formulation of specialty detergents for industrial cleaning applications.
Hexafluorozirconic acid finds application in the production of high-quality pigments for ink and paint industries.
Hexafluorozirconic acid is employed in the treatment of metal surfaces prior to adhesive bonding in aerospace applications.
Hexafluorozirconic acid is used in the production of specialty ceramics used in the semiconductor industry.
Hexafluorozirconic acid finds application in the formulation of specialty lubricants and anti-friction coatings.
Hexafluorozirconic acid is utilized in the synthesis of zirconium-based nanoparticles for various advanced materials.
Hexafluorozirconic acid is used in the production of specialty resins and polymers with enhanced heat and chemical resistance.
Hexafluorozirconic acid finds application in the formulation of specialty concrete additives for improved strength and durability.
Hexafluorozirconic acid (H2ZrF6) has several applications across various industries due to its unique properties.
Here are some common applications of hexafluorozirconic acid:
Metal surface treatment:
Hexafluorozirconic acid is widely used for etching, cleaning, and passivating metal surfaces, especially in the aerospace, automotive, and electronics industries.
Hexafluorozirconic acid helps to remove impurities and provide a clean and activated surface for subsequent processes like plating or coating.
Ceramic production:
The acid is utilized in the manufacturing of ceramic products, including ceramic coatings, tiles, and refractory materials.
Hexafluorozirconic acid helps improve the mechanical properties and corrosion resistance of ceramics, enhancing their performance and durability.
Electronics manufacturing:
Hexafluorozirconic acid is employed in the electronics industry for various purposes.
Hexafluorozirconic acid is used in the etching of printed circuit boards (PCBs) to remove unwanted copper traces and create circuit patterns.
Hexafluorozirconic acid also finds use in cleaning semiconductor surfaces during the fabrication of electronic components.
Catalyst synthesis:
Hexafluorozirconic acid serves as a precursor in the synthesis of zirconium-based catalysts.
These catalysts find applications in a wide range of organic reactions, including polymerization, hydrogenation, and oxidation processes.
Specialty glasses:
Hexafluorozirconic acid is used in the production of specialty glasses, such as high-refractive-index glasses and glass coatings.
Hexafluorozirconic acid contributes to the optical properties and stability of these glasses, making them suitable for applications in optics, lasers, and telecommunications.
Electrolyte additives:
Hexafluorozirconic acid is utilized as an additive in electrolytes for energy storage devices, including batteries and fuel cells.
Hexafluorozirconic acid helps improve the ionic conductivity and stability of the electrolyte, enhancing the performance and efficiency of these energy storage systems.
Flux in soldering and brazing:
Hexafluorozirconic acid is employed as a flux in soldering and brazing processes.
Hexafluorozirconic acid helps to remove metal oxide layers and promote wetting between the solder or brazing material and the metal surface, ensuring strong and reliable bonds.
Pigments and dyes:
Hexafluorozirconic acid is used in the production of certain pigments and dyes, particularly those based on zirconium compounds.
These pigments find application in paints, coatings, plastics, and textiles, providing coloration and UV resistance.
Water treatment:
Hexafluorozirconic acid is sometimes used in water treatment processes to control pH levels and remove impurities.
Hexafluorozirconic acid can be employed to adjust the alkalinity or acidity of water and aid in the precipitation or removal of specific ions.
Laboratory reagent:
Hexafluorozirconic acid serves as a useful laboratory reagent for various chemical reactions and research purposes.
Hexafluorozirconic acid can be utilized as a source of zirconium ions or as a strong acid in certain experimental setups.
DESCRIPTION
Hexafluorozirconic acid is a chemical compound with the molecular formula H2ZrF6.
Hexafluorozirconic acid is an inorganic acid that is composed of zirconium (Zr) and fluorine (F) atoms.
Hexafluorozirconic acid is highly soluble in water and forms a colorless to pale yellow solution.
Hexafluorozirconic acid is commonly used in various industrial applications, particularly in the field of metal surface treatment, ceramic production, and electronics manufacturing.
Hexafluorozirconic acid possesses strong acidic properties and reacts with a wide range of metals, metal oxides, and metal salts.
Hexafluorozirconic acid is an inorganic compound with a molecular formula of H2ZrF6.
Hexafluorozirconic acid is a colorless to pale yellow liquid with a strong acidic odor.
Hexafluorozirconic acid is highly soluble in water, forming a clear and acidic solution.
Hexafluorozirconic acid is corrosive and can cause severe burns to the skin and eyes.
Hexafluorozirconic acid is primarily used in metal surface treatment processes, such as etching, cleaning, and passivation.
Hexafluorozirconic acid reacts with various metals, metal oxides, and metal salts, forming stable complexes.
Hexafluorozirconic acid is employed in the production of ceramic coatings, providing enhanced durability and corrosion resistance.
Hexafluorozirconic acid serves as a raw material in the synthesis of zirconium compounds, such as zirconium dioxide (ZrO2).
Hexafluorozirconic acid finds application in the electronics industry for etching and cleaning semiconductor surfaces.
Hexafluorozirconic acid is utilized in the preparation of zirconium-based catalysts for organic reactions.
Hexafluorozirconic acid is a source of zirconium fluoride, which is used as a flux in soldering and brazing processes.
Hexafluorozirconic acid can be employed in the production of specialty glasses, ceramics, and pigments.
Hexafluorozirconic acid is used as an additive in electrolytes for energy storage devices, including batteries and fuel cells.
Hexafluorozirconic acid exhibits strong oxidizing properties and can react with reducing agents, releasing toxic fluorine gas.
Hexafluorozirconic acid is highly reactive with alkaline substances, forming water-insoluble zirconium compounds.
Hexafluorozirconic acid is a hazardous substance that should be handled with appropriate safety precautions.
Hexafluorozirconic acid should be stored in tightly sealed containers away from heat, moisture, and incompatible substances.
Hexafluorozirconic acid is classified as a dangerous goods item and must be transported in accordance with regulations.
Hexafluorozirconic acid has a molecular weight of approximately 207.21 grams per mole.
Its boiling point is around 150-160 degrees Celsius.
Hexafluorozirconic acid can release irritating or toxic fumes when heated or exposed to fire.
Hexafluorozirconic acid is soluble in polar solvents such as acetone, methanol, and ethanol.
Hexafluorozirconic acid has a strong affinity for hydroxide ions, making it a potent acid in aqueous solutions.
Hexafluorozirconic acid is stable under normal conditions but can decompose at elevated temperatures.
Hexafluorozirconic acid is a versatile compound with a wide range of applications, particularly in the fields of metal surface treatment, ceramics, and electronics.
PROPERTIES
Chemical Formula: H2ZrF6
Molecular Weight: 207.22 g/mol
Appearance: Colorless or pale yellow liquid
Odor: Sharp, pungent odor
Density: 2.49 g/cm³
Melting Point: -15.3°C (-4.5°F)
Boiling Point: 150°C (302°F)
Solubility: Soluble in water and organic solvents like ethanol and acetone
pH: Highly acidic, typically below 1
Vapor Pressure: Low to moderate vapor pressure
Viscosity: Relatively low viscosity
Flammability: Not flammable
Reactivity: Highly reactive with strong oxidizing agents and bases
Stability: Stable under normal conditions, but may decompose upon heating or exposure to certain conditions
Corrosivity: Highly corrosive to metals and may cause damage to reactive surfaces
Hygroscopicity: Absorbs moisture from the air, forming hydrates
Toxicity: Can cause severe irritation and burns to the skin, eyes, and respiratory system
Hazardous Combustion Products: Hydrogen fluoride (HF) gas and toxic fumes
Environmental Impact: Harmful to aquatic life and the environment, should be handled with care
Reactivity with Water: Reacts exothermically with water, releasing hydrogen fluoride gas
Oxidizing Properties: Can act as an oxidizing agent in certain reactions
Dissociation: Partially dissociates in water, releasing hydrogen ions (H+) and hexafluorozirconate ions (ZrF6^2-)
FIRST AID
General Advice:
Ensure personal protective equipment (PPE) is worn by individuals providing first aid.
Keep contaminated individuals warm and at rest.
Prevent further exposure and avoid contact with eyes, skin, and clothing.
Promptly remove contaminated clothing and wash thoroughly before reuse.
If necessary, transfer the individual to a medical facility for further evaluation and treatment.
Inhalation:
Move the affected person to fresh air and ensure they are in a well-ventilated area.
If breathing is difficult, provide oxygen if available and seek immediate medical attention.
If the person is not breathing, perform artificial respiration and seek medical help.
Skin Contact:
Immediately remove contaminated clothing and rinse the affected area with plenty of water for at least 15 minutes.
Use mild soap if available.
Avoid using hot water, as it may increase absorption through the skin.
Seek medical attention if irritation, redness, or pain persists after thorough rinsing.
Eye Contact:
Rinse the eyes gently but thoroughly with water for at least 15 minutes, keeping the eyelids open to ensure thorough flushing.
Remove contact lenses, if applicable, after initial rinsing.
Seek immediate medical attention, even if there are no initial symptoms of irritation or pain.
Ingestion:
Rinse the mouth thoroughly with water, but do not induce vomiting unless instructed to do so by medical personnel.
If the person is conscious and alert, provide small sips of water to rinse the mouth and drink water in small amounts to dilute the acid.
Do not give anything by mouth to an unconscious or convulsing person.
Seek immediate medical attention.
HANDLING AND STORAGE
Handling:
Personal Protection:
Wear appropriate personal protective equipment (PPE) including chemical-resistant gloves, safety goggles or face shield, and protective clothing to prevent skin and eye contact.
Ventilation:
Handle in a well-ventilated area or use local exhaust ventilation to maintain air quality and prevent the buildup of fumes.
Avoid Inhalation:
Avoid breathing in vapors or mists.
If working in an enclosed space, use respiratory protection such as a properly fitted NIOSH-approved respirator.
Contamination Prevention:
Prevent contamination of other materials by using dedicated equipment and containers for handling the acid.
Avoid contact with incompatible substances.
Spill and Leak Response:
In the event of a spill or leak, contain the area and prevent further release into the environment.
Absorb small spills with an inert absorbent material and dispose of it according to regulations.
Storage:
Storage Area:
Store hexafluorozirconic acid in a cool, dry, well-ventilated area away from incompatible materials, sources of ignition, and direct sunlight.
Temperature Control:
Maintain storage temperature below 30°C (86°F) to prevent decomposition or hazardous reactions.
Containers:
Use appropriate containers made of compatible materials, such as high-density polyethylene (HDPE) or glass, that are tightly sealed to prevent leaks or spills.
Labeling:
Clearly label containers with the product name, concentration, hazard symbols, and any necessary warning information.
Accessibility:
Store containers in a designated area, clearly marked and accessible only to authorized personnel who are trained in handling hazardous chemicals.
Separation:
Separate hexafluorozirconic acid from incompatible substances, including strong oxidizing agents, bases, and reactive metals.
Secondary Containment:
Consider using secondary containment measures, such as spill containment pallets, to prevent leaks or spills from reaching the surrounding environment.
SYNONYMS
Zirconium hexafluoride
Zirconium fluoride
Zirconium(IV) fluoride
Zirconium(IV) hexafluoride
Zirconium(IV) fluoride hexahydrate
Zirconium fluoride hydrate
Zirconium(IV) fluoride solution
Zirconium hexafluoride solution
Zirconium(IV) fluoride complex
Zirconium(IV) fluoride hydrate complex
Zirconium(IV) fluoride hexahydrate complex
Zirconium fluoride complex solution
Zirconium fluoride hydrate complex solution
Hexafluorozirconic acid solution
Hexafluorozirconic acid hydrate
Hexafluorozirconic acid hydrate solution
Hexafluorozirconic acid hexahydrate
Hexafluorozirconic acid hexahydrate solution
Zirconium(IV) fluoride hexahydrate solution
Zirconium hexafluoride hydrate
Zirconium hexafluoride hydrate solution
Zirconium(IV) fluoride hydrate solution
Zirconium(IV) fluoride hexahydrate hydrate solution
Zirconium(IV) fluoride hexahydrate hydrate complex
Zirconium fluoride hexahydrate hydrate complex solution
Zirconium(IV) hexafluorozirconate
Zirconium(IV) hexafluoride complex
Zirconium(IV) fluoride hydrate complex
Zirconium(IV) fluoride hexahydrate hydrate complex solution
Zirconium(IV) fluoride hexahydrate hydrate complex solution
Zirconium fluoride hexahydrate hydrate complex
Zirconium(IV) fluoride hexahydrate hydrate
Zirconium(IV) fluoride hexahydrate hydrate solution
Hexafluorozirconate acid
Hexafluorozirconate hydrate
Hexafluorozirconate solution
ZrF6
Zirconium(IV) fluoride solution
Zirconium(IV) fluoride complex solution
Zirconium(IV) fluoride hydrate solution
Zirconium(IV) fluoride hexahydrate solution
Zirconium hexafluoride hydrate complex
Zirconium hexafluoride hydrate complex solution
Zirconium hexafluoride hydrate solution
Zirconium hexafluorozirconate hydrate
Zirconium hexafluorozirconate hydrate solution
Zirconium hexafluorozirconate solution
Zirconium fluoride complex solution
Zirconium fluoride hydrate complex solution
Zirconium fluoride hydrate solution
Zirconium(IV) hexafluoride acid
Zirconium(IV) fluoride hexahydrate acid
Zirconium(IV) fluoride hydrate acid solution
Hexafluorozirconic acid hydrate complex
Hexafluorozirconic acid hexahydrate hydrate complex
Hexafluorozirconic acid hexahydrate hydrate complex solution
Zirconium(IV) fluoride hexahydrate hydrate complex acid
Zirconium(IV) fluoride hexahydrate hydrate complex acid solution
Zirconium(IV) fluoride hexahydrate hydrate acid
Zirconium(IV) fluoride hexahydrate hydrate acid solution
Zirconium(IV) fluoride hexahydrate hydrate acid complex
Zirconium(IV) fluoride hexahydrate hydrate acid complex solution
Zirconium(IV) fluoride hexahydrate hydrate acid solution
Zirconium(IV) fluoride hexahydrate hydrate acid complex
Hexafluorozirconic acid hexahydrate hydrate acid
Hexafluorozirconic acid hexahydrate hydrate acid solution
Hexafluorozirconic acid hexahydrate hydrate acid complex
Zirconium hexafluoride hydrate acid complex
Zirconium hexafluoride hydrate acid complex solution
Zirconium hexafluoride hydrate acid solution
Zirconium hexafluoride hydrate acid
Zirconium hexafluoride hydrate acid solution
Zirconium hexafluoride hydrate acid complex
Zirconium hexafluorozirconate hydrate acid
Zirconium hexafluorozirconate hydrate acid solution