High-Purity 4-Amino-2-(trifluoromethyl)benzonitrile: Key Intermediate for Organic Synthesis & Pharmaceutical Development

Discover the essential properties and industrial applications of 4-Amino-2-(trifluoromethyl)benzonitrile. As a critical raw material for pharmaceutical synthesis and advanced organic chemistry, our product ensures the quality and efficiency of your manufacturing processes. We are a trusted manufacturer and supplier based in China, committed to providing competitive pricing and consistent supply.

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Advantages of Sourcing Our Chemical Intermediates

Superior Quality Assurance

Benefit from our meticulous quality control, ensuring that every batch of 4-Amino-2-(trifluoromethyl)benzonitrile meets stringent industry standards, critical for pharmaceutical intermediate applications.

Cost-Effective Sourcing from China

As a direct manufacturer, we provide competitive pricing for this essential organic synthesis intermediate, allowing you to optimize your procurement budget without compromising on quality.

Reliable Supply Chain Management

We understand the importance of timely delivery. Our robust supply chain management ensures consistent availability, enabling you to maintain uninterrupted production schedules for your chemical or pharmaceutical projects.

Key Application Areas

Pharmaceutical Synthesis

Crucial for the synthesis of bicalutamide and other novel pharmaceutical compounds, our 4-Amino-2-(trifluoromethyl)benzonitrile is a high-value intermediate for drug manufacturers.

Organic Building Block

This versatile compound is widely used as a building block in diverse organic synthesis pathways, enabling the creation of complex molecules with specific functionalities.

Agrochemical Research

While primarily used in pharmaceuticals, its unique chemical structure can also be explored in the development of new agrochemical compounds, offering potential solutions in crop protection.

Material Science Exploration

The trifluoromethyl and nitrile groups offer unique electronic and structural properties, making it a candidate for research in advanced material science applications.