4-Amino-2-fluorobenzonitrile: A Versatile Organic Synthesis Intermediate
Unlocking the potential of organic chemistry with a key building block for advanced applications.
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4-Amino-2-fluorobenzonitrile
As a critical organic synthesis intermediate, 4-Amino-2-fluorobenzonitrile (CAS 53312-80-4) is indispensable in creating complex molecules for diverse industries.
- Discover the detailed properties of 4-Amino-2-fluorobenzonitrile, including its physical and chemical characteristics essential for successful synthesis projects.
- Explore the wide-ranging 4-Amino-2-fluorobenzonitrile applications, from pharmaceuticals to agrochemicals, highlighting its versatility.
- Understand why sourcing from a reliable 4-Amino-2-fluorobenzonitrile manufacturer in China ensures consistent quality and supply chain stability.
- Learn about the key characteristics that make it a preferred organic chemistry building block in modern chemical development.
Key Advantages
Enhanced Reactivity
The presence of fluorine and nitrile groups contributes to unique reactivity, making it ideal for developing fluorinated pharmaceuticals with improved properties.
Versatile Building Block
This compound serves as a crucial organic chemistry building block, enabling the synthesis of a wide array of complex organic molecules.
Reliable Sourcing
Partnering with a trusted 4-Amino-2-fluorobenzonitrile manufacturer in China guarantees access to high-purity materials crucial for demanding synthesis.
Key Applications
Pharmaceutical Synthesis
Utilize this compound as a key intermediate for creating novel fluorinated pharmaceuticals with enhanced efficacy and bioavailability.
Agrochemical Development
Incorporate it into the synthesis of advanced agrochemicals, contributing to the development of more effective crop protection solutions.
Specialty Chemicals
Its versatile nature makes it suitable for producing specialty chemicals, including dyes and materials for advanced electronic applications.
Research & Development
A valuable tool for researchers in organic chemistry, facilitating the exploration of new molecular structures and reaction pathways.