4-Dodecylaniline CAS 104-42-7: High-Purity Supplier & Applications in Synthesis

Discover the applications and sourcing of 4-Dodecylaniline (CAS 104-42-7), a vital fine chemical for dye production and complex organic synthesis. Learn why partnering with a trusted manufacturer in China ensures quality and cost-effectiveness for your R&D and production needs.

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Why Choose Our 4-Dodecylaniline

Exceptional Purity Standards

Our 4-Dodecylaniline meets stringent quality standards, typically 99%min purity, making it ideal for sensitive organic synthesis applications where impurities can impact reaction outcomes. Partner with a manufacturer who prioritizes purity.

Versatile Chemical Intermediate

Whether for dye manufacturing or intricate organic synthesis, 4-Dodecylaniline serves as a crucial building block. Its structure supports diverse chemical transformations, enabling innovation for R&D scientists and formulators.

Streamlined Procurement Process

As a prominent supplier in China, we facilitate easy purchasing of 4-Dodecylaniline. For bulk orders or to inquire about pricing and availability, please reach out to our dedicated sales team for a prompt quotation.

Key Applications of 4-Dodecylaniline

Dye Synthesis

4-Dodecylaniline is a critical intermediate in the synthesis of various dyes, contributing to the color and performance characteristics required in textile, printing, and coating industries. We supply this essential component to dye manufacturers.

Organic Synthesis

Researchers and chemists utilize 4-Dodecylaniline in a wide range of organic synthesis reactions. Its specific chemical properties make it valuable for creating complex molecules and for research into new chemical entities.

Material Science Research

In scientific research, 4-Dodecylaniline is employed to investigate phenomena such as the water solubilization of single-walled carbon nanotubes (SWNTs), showcasing its role in cutting-edge material science studies.

Catalysis and Reaction Studies

The compound is also used in studies concerning proton transfer steps in molecular oxygen reduction by systems like decamethylferrocene, highlighting its utility in understanding fundamental chemical processes.