Unlock the Potential of 1-Fluoro-2,4-bis(trifluoromethyl)benzene
A comprehensive guide to its properties, applications, and importance in modern organic synthesis.
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1-Fluoro-2,4-bis(trifluoromethyl)benzene
This essential chemical intermediate serves as a crucial building block in various organic synthesis pathways, enabling the creation of complex molecules.
- Explore the synthesis of trifluoromethylated aromatic compounds with this versatile building block.
- Understand the key chemical properties, including its density of 1.444g/cm3 and boiling point of 111.1u00b0C, crucial for process optimization.
- Learn about the critical storage guidelines for maintaining the integrity of high purity organic intermediates.
- Discover how 1-fluoro-2,4-bis(trifluoromethyl)benzene contributes to the development of specialty organic compounds.
Advantages Offered
High Purity & Consistency
Achieve reliable results in your organic synthesis projects with a product boasting u226598.0% assay, vital for predictable chemical outcomes.
Versatile Intermediate
Its unique structure makes it a valuable component in creating a wide array of complex organic molecules, supporting diverse research and development needs.
Safe Handling & Storage
Proper understanding of its flash point (22.6u00b0C) and recommended storage in cool, ventilated places ensures safe and effective utilization.
Key Applications
Organic Synthesis
As a primary intermediate, it facilitates the construction of target molecules in complex synthetic routes, enabling innovation in chemical research.
Fine Chemical Production
Used in the manufacturing of fine chemicals, where precise molecular structures and high purity are paramount for end-product performance.
Research & Development
Supports R&D efforts in pharmaceuticals, agrochemicals, and materials science by providing a reliable building block for novel compound development.
Specialty Chemical Synthesis
Crucial for creating specialty chemicals with specific functionalities, often involving fluorinated organic compounds for unique properties.