N-Ethyl-N-cyanoethyl-m-toluidine: The Critical Intermediate for High-Performance Dyes and Chemicals

Discover the essential role of N-Ethyl-N-cyanoethyl-m-toluidine (CAS 148-69-6) as a premier intermediate. As a leading manufacturer and supplier in China, we offer high-purity products crucial for vibrant textile dyes, advanced pharmaceuticals, and effective agrochemicals. Learn about its synthesis, applications, and why sourcing from a reliable supplier ensures quality and consistency.

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Why Choose Our N-Ethyl-N-cyanoethyl-m-toluidine

Exceptional Purity for Consistent Results

Our N-Ethyl-N-cyanoethyl-m-toluidine consistently meets high purity standards (≥99%), ensuring optimal performance and predictable outcomes in your dye formulations and chemical syntheses.

Extensive Application Versatility

This intermediate is vital for a broad spectrum of applications, from producing vibrant disperse dyes for polyester to serving as a building block for pharmaceuticals and agrochemicals. Explore its potential for your specific needs.

Commitment to Quality and Reliability

As a dedicated supplier, we prioritize rigorous quality control throughout our manufacturing process. Rely on us for a consistent supply of this essential chemical intermediate, meeting your production schedules with confidence.

Key Applications Driving Industrial Progress

Dye and Pigment Manufacturing

A crucial intermediate for a wide range of disperse dyes, including Disperse Red 65, 88, 153, and 179, essential for vibrant and durable coloration of synthetic fibers.

Pharmaceutical Intermediate

Serves as a versatile building block in the synthesis of Active Pharmaceutical Ingredients (APIs), contributing to the development of antihistamines and antifungal agents.

Agrochemical Synthesis

Key component in the production of herbicides and pesticides, particularly sulfonylurea herbicides, offering effective weed control in agriculture.

Specialty Chemical Production

Utilized in the creation of specialty chemicals, including precursors for photoresists and components in advanced polymer formulations.