High Purity Methyl 4-formyl-2-methylbenzoate CAS 74733-23-6: Reliable Manufacturer & Supplier in China

Discover a critical organic synthesis intermediate, Methyl 4-formyl-2-methylbenzoate (CAS 74733-23-6), offering high purity and versatility. As a leading manufacturer and supplier in China, we provide competitive prices and reliable supply for your research and production needs. Contact us for a free sample and quote.

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Why Choose Our Methyl 4-formyl-2-methylbenzoate

Exceptional Purity for Critical Reactions

Our Methyl 4-formyl-2-methylbenzoate consistently meets a minimum purity of 97%, ensuring predictable and reproducible results in your synthesis projects. We understand the importance of quality for intermediates used in pharmaceutical and fine chemical applications.

Competitive Manufacturer Pricing in China

Leverage our direct manufacturer relationships in China to secure Methyl 4-formyl-2-methylbenzoate at highly competitive prices. We are committed to offering cost-effective solutions without compromising on quality, making us your ideal supplier for bulk purchases.

Dedicated Technical Support & Free Samples

As a premier supplier, we provide comprehensive support, including easy access to COA data and the opportunity to request free samples. Our team is ready to assist with your inquiry about this synthesis materials intermediate.

Key Applications of Methyl 4-formyl-2-methylbenzoate

Organic Synthesis Building Block

Methyl 4-formyl-2-methylbenzoate is a vital intermediate for constructing complex organic molecules, widely used in research and development for novel compound synthesis.

Pharmaceutical Intermediates

Its unique structure makes it an excellent precursor for the synthesis of various pharmaceutical intermediates, contributing to the development of new therapeutic agents.

Fine Chemical Manufacturing

This compound is instrumental in the production of fine chemicals, offering flexibility for custom synthesis projects and specialized chemical formulations.

Materials Science Research

Its aldehyde and ester functionalities make it a potential candidate for applications in materials science, including the creation of functional polymers and advanced materials.