2-Chloro-4-fluorobenzylamine: Essential Intermediate for Pharmaceutical Synthesis
Discover the key properties and applications of this vital chemical building block for your research and development.
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2-Chloro-4-fluorobenzylamine
2-Chloro-4-fluorobenzylamine (CAS 15205-11-5) is a critical chemical intermediate widely utilized in the pharmaceutical industry for the synthesis of active pharmaceutical ingredients (APIs). Its unique structure, featuring both chlorine and fluorine substituents on the benzyl ring, makes it a valuable building block for creating complex organic molecules.
- Explore the properties of 2-chloro-4-fluorobenzylamine for your organic synthesis needs. This compound is essential for crafting intricate molecular structures in drug development.
- Source high-quality 2-chloro-4-fluorobenzylamine with 97% purity for reliable and efficient pharmaceutical intermediate applications.
- Understand the use of 2-chloro-4-fluorobenzylamine in organic synthesis, a key component for creating novel compounds.
- Learn about the safe handling of air-sensitive chemicals for pharmaceutical development, ensuring optimal product integrity.
Advantages Offered
Versatile Synthetic Building Block
Leverage the reactivity of 2-chloro-4-fluorobenzylamine as a versatile building block in numerous organic synthesis pathways, enabling the creation of diverse chemical entities.
Critical for Pharmaceutical R&D
This compound is indispensable for researchers focused on developing new drugs, contributing to advancements in API synthesis and therapeutic innovation.
Precise Chemical Structure
Benefit from the well-defined structure of 2-chloro-4-fluorobenzylamine, ensuring predictable reactions and consistent outcomes in your chemical processes.
Key Applications
Pharmaceutical Intermediates
The primary role of 2-chloro-4-fluorobenzylamine lies in its function as a pharmaceutical intermediate, crucial for synthesizing a wide range of APIs.
Organic Chemistry
Its functional groups make it highly valuable in general organic chemistry for building complex molecular frameworks and exploring new reaction pathways.
API Synthesis
As a key building block, it directly contributes to the cost-effective and efficient synthesis of active pharmaceutical ingredients.
Custom Synthesis Projects
For custom synthesis projects, sourcing reliable materials like 2-chloro-4-fluorobenzylamine is paramount for successful project completion.