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Instruction of 5,7-Difluoro-6-bromoquinoline: A Comprehensive Guide for the Chemical Industry
5,7-Difluoro-6-bromoquinoline is a synthetic organic chemical that is widely used in the pharmaceutical, agrochemical, and other industries.
The chemical structure of 5,7-Difluoro-6-bromoquinoline is shown below:
The chemical formula for 5,7-Difluoro-6-bromoquinoline is C12H7Cl2Br2N3O2.
It belongs to a class of compounds known as quinolines, which are aromatic heterocyclic compounds that contain a nitrogen atom as a part of their structure.
The physical and chemical properties of 5,7-Difluoro-6-bromoquinoline are as follows:
- Melting Point: 230-232°C
- Boiling Point: 269-271°C
- Physical State: Solid
- Solubility: Soluble in water and many organic solvents
- Density: 1.
6 g/cm3 - Viscosity: 7.
5 centipoise (cP) at 25°C - Refractive Index: 1.
543-1.
547 - pH: 5.
5-7.
5
5,7-Difluoro-6-bromoquinoline is synthesized by several methods, including the Suzuki reaction, the P25-mediated reaction, and the Stille reaction.
The chemical synthesis of 5,7-Difluoro-6-bromoquinoline involves a series of steps that involve the reaction of various reagents and the use of chemical catalysts.
The safety precautions that should be taken when handling 5,7-Difluoro-6-bromoquinoline are as follows:
- Wear appropriate personal protective equipment (PPE), including gloves, safety glasses, and a lab coat.
- Avoid contact with skin, eyes, and clothing.
- Use a fume hood or ventilated area for experimental work.
- Wash hands thoroughly after handling.
- Store in a cool, dry, and well-ventilated area, away from sources of ignition.
- Dispose of waste materials in accordance with local regulations and guidelines.
In conclusion, 5,7-Difluoro-6-bromoquinoline is a versatile chemical compound that has many applications in the pharmaceutical, agrochemical, and other industries.
Its synthesis involves a series of steps that require the use of various reagents and chemical catalysts.
Safety precautions should be taken when handling 5,7-Difluoro-6-bromoquinoline to avoid any potential health hazards.
As the demand for this chemical continues to grow, it is important for chemical manufacturers and users to stay informed about its properties, synthesis, and safe handling practices.