Titanium tetrachloride (ticl4) cas 7550-45-0
Assay: 99.9%min
Appearance: Colorless transparent liquid
Capacity: 84000MT per year
Packaging: 250kg drum, IBC drum
related documents:
COA of Titanium Tetrachloride CAS 7550-45-0
TDS of Titanium Tetrachloride CAS 7550-45-0
Request for product documents
Titanium Tetrachloride (TiCl4) CAS 7550-45-0: Technical Guide & Procurement Insights
Table of Contents
- 1. Product Overview & Specifications
- 2. Key Applications of Titanium Tetrachloride
- 3. TiCl4 vs. Competing Chlorides: Parameter Comparison
- 4. Operational Guidelines & Safety Protocols
- 5. Industry Case Studies
- 6. Request Customized Solutions
1. Product Overview & Specifications
| Parameter | TiCl4 | TiCl3 | SiCl4 |
|---|---|---|---|
| CAS Number | 7550-45-0 | 7705-07-9 | 10026-04-7 |
| Molecular Weight | 189.68 g/mol | 154.22 g/mol | 169.90 g/mol |
| Appearance | Colorless liquid | Violet crystals | Colorless liquid |
| Density (25°C) | 1.726 g/cm³ | 2.64 g/cm³ | 1.483 g/cm³ |
| Boiling Point | 136.4°C | 440°C (decomposes) | 57.6°C |
| Reactivity | High hydrolysis sensitivity | Moderate stability | Rapid hydrolysis |
2. Key Applications of Titanium Tetrachloride
2.1 Ziegler-Natta Catalyst Production
As the primary precursor for polyolefin catalysts, TiCl4 enables precise control over polymer molecular structures in 78% of global polypropylene manufacturing processes.
2.2 Titanium Metal Refining
In the Kroll process, TiCl4 undergoes magnesium reduction to produce titanium sponge metal with 99.7% purity for aerospace components.
2.3 Optical Coating Deposition
High-purity TiCl4 (>99.999%) serves as CVD precursor for anti-reflective coatings on precision optics and solar panel surfaces.
4. Operational Guidelines & Safety Protocols
| Parameter | Requirement |
|---|---|
| Storage Temperature | -10°C to 25°C (sealed containers) |
| Handling PPE | Chemical-resistant gloves + Full-face shield + FR clothing |
| Spill Response | Neutralize with dry sodium bicarbonate |
| DOT Shipping Class | 8 Corrosive, UN1838 |
5. Industry Case Studies
Case 1: Polymer Catalyst Optimization
Client: European Petrochemical Producer
Challenge: Improve catalyst activity by 22% in polyethylene production
Solution: Custom TiCl4/MgCl2 support system with controlled particle size distribution
Outcome: Achieved 19.8% yield increase with 15% lower activator consumption
Case 2: Aerospace Titanium Production
Client: North American Metal Supplier
Challenge: Reduce chloride residuals in titanium ingots
Solution: Multi-stage vacuum distillation of TiCl4 feedstock
Outcome: Met ASM SB-348 Grade 5 specifications with 99.94% purity
6. Request Customized Solutions
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