Chloroplatinic Acid Hexahydrate: A Platinum-Based Catalyst in Modern Chemistry
Chloroplatinic acid hexahydrate (H₂PtCl₆·6H₂O) is a hydrated platinum compound widely used in catalysis, analytical chemistry, and precious metal recovery. As a water-soluble, red-orange crystalline solid, it is a key platinum source in both chemical synthesis and industrial applications.
Chemical Overview
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Chemical Name: Chloroplatinic acid hexahydrate
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Chemical Formula: H₂PtCl₆·6H₂O
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CAS Number: 18497-13-7
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Molar Mass: 517.90 g/mol
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Appearance: Red to orange crystalline solid
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Solubility: Highly soluble in water and alcohol
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Odor: Odorless
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Stability: Stable under normal conditions; hygroscopic
Chemical Structure and Properties
Chloroplatinic acid consists of the complex ion [PtCl₆]²⁻ with two protons (H⁺) balancing the charge. The hexahydrate form includes six water molecules of crystallization, contributing to its solid-state stability.
Property | Description |
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Physical State | Crystalline solid (hydrated) |
Color | Orange-red |
Acid Strength | Strong acid in aqueous solution |
Oxidation State of Pt | +4 (Platinum IV) |
Hygroscopic | Yes – absorbs moisture from the air |
Reactivity | Strong oxidizing and catalytic agent |
Key Applications
1. Catalysis in Hydrogenation
Chloroplatinic acid is used to prepare platinum catalysts, such as:
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Platinized carbon
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Platinum black
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Platinum on silica/alumina
These catalysts are crucial in:
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Hydrogenation reactions
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Fuel cell technologies
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Organic synthesis
2. Analytical Chemistry
Used in gravimetric and colorimetric analysis for:
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Detection of potassium (forms sparingly soluble potassium hexachloroplatinate)
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Trace metal analysis
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Standard platinum solutions in analytical testing
3. Platinum Electroplating
H₂PtCl₆·6H₂O is the primary platinum source for electroplating baths, providing a uniform, corrosion-resistant, and conductive platinum coating for:
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Electronics
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Medical devices
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Laboratory equipment
4. Chemical Synthesis
Chloroplatinic acid is a precursor for other platinum compounds such as:
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Platinum(II) chloride (PtCl₂)
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Platinum-based pharmaceutical complexes
5. Glass Manufacturing
Used in making platinum-based coatings and crucibles due to platinum’s high thermal resistance and chemical inertness.
Safety and Handling
While chloroplatinic acid hexahydrate is not explosive or flammable, it is a corrosive and toxic compound and must be handled with care.
Hazards:
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Causes severe skin and eye irritation
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Toxic if inhaled or ingested
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May cause allergic reactions or sensitization
Personal Protection:
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Wear nitrile gloves, safety goggles, and lab coat
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Use in a fume hood
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Avoid prolonged skin contact or inhalation of dust
First Aid:
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Skin/Eye Contact: Rinse thoroughly with water and seek medical help
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Inhalation: Move to fresh air and get medical attention
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Ingestion: Do not induce vomiting; rinse mouth and get emergency care
Storage and Stability
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Store in a cool, dry, well-ventilated area
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Keep in airtightly sealed containers, away from light and incompatible materials (e.g., reducing agents)
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Avoid contact with organic materials, which can react with oxidizers
Environmental and Regulatory Considerations
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Toxic to aquatic life—must not be released into the environment
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Disposal must comply with local hazardous waste regulations
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As a precious metal, recycling and recovery are economically and environmentally favorable
Conclusion
Chloroplatinic acid hexahydrate is a powerful and multifunctional platinum compound, playing a central role in catalysis, analytical chemistry, electroplating, and material science. Its ability to produce high-performance platinum catalysts makes it invaluable in both research and industrial sectors. However, its toxicity and corrosive nature require careful handling, storage, and disposal practices.
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