6-Methyl-4-phenylchroman-2-one: A Key Intermediate for Pharmaceutical Synthesis

Discover the essential role of 6-Methyl-4-phenylchroman-2-one (CAS 40546-94-9) in the pharmaceutical industry, particularly as a critical intermediate for Tolterodine. Learn about its properties, synthesis, and why sourcing from a trusted supplier is crucial for your R&D and manufacturing needs.

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Advantages of Sourcing Our 6-Methyl-4-phenylchroman-2-one

Consistent Quality and Purity

We specialize in producing 6-Methyl-4-phenylchroman-2-one with a guaranteed purity of ≥98%. Our rigorous quality control processes ensure that every batch meets the high standards required for pharmaceutical applications, providing you with confidence in your synthesis.

Expertise in Pharmaceutical Intermediates

Leveraging our deep understanding of chemical synthesis and the pharmaceutical market, we provide intermediates like 6-Methyl-4-phenylchroman-2-one that are crucial for successful drug development and manufacturing. We are your reliable supplier for Tolterodine synthesis intermediates.

Competitive Manufacturer Pricing

As a direct manufacturer, we offer competitive pricing for 6-Methyl-4-phenylchroman-2-one, making it an economical choice for your procurement needs. We welcome inquiries for bulk orders to buy this essential chemical at the best market price.

Key Applications and Uses

Pharmaceutical Synthesis

The primary application of 6-Methyl-4-phenylchroman-2-one is as a key intermediate in the synthesis of Tolterodine, used for treating overactive bladder. Its structural integrity is vital for the efficacy of the final drug product.

Medicinal Chemistry Research

Researchers utilize this compound in medicinal chemistry for developing new drug candidates, exploring its structural motifs for potential therapeutic benefits beyond its role in Tolterodine synthesis.

Organic Synthesis Building Block

Its well-defined chemical structure makes 6-Methyl-4-phenylchroman-2-one a versatile building block in various organic synthesis pathways, enabling the creation of complex molecules.

Industrial Chemical Processes

Beyond pharmaceuticals, this compound finds utility in the broader chemical industry as an intermediate for specialty chemicals, dyes, and other fine chemical applications.