Ethyl 4-oxocyclohexanecarboxylate: A Versatile Chemical Intermediate for Synthesis | Manufacturer & Supplier

Discover the chemical properties and applications of Ethyl 4-oxocyclohexanecarboxylate (CAS 17159-79-4), a crucial intermediate for organic synthesis. Sourced from trusted manufacturers and suppliers in China, this compound offers high purity and cost-effectiveness for your R&D and production needs.

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Advantages of Sourcing with Us

Uncompromised Purity and Quality

Our Ethyl 4-oxocyclohexanecarboxylate is consistently supplied at high purity levels (typically 97-98%), meeting stringent industry standards. This ensures reliable performance in your critical applications, whether for pharmaceutical intermediates or cosmetic ingredients.

Competitive Manufacturer Pricing

By partnering with us, you gain access to direct manufacturer pricing for Ethyl 4-oxocyclohexanecarboxylate. This cost-effectiveness is vital for optimizing your project budgets, especially when looking to purchase in bulk.

Reliable Supply Chain in China

We are a dedicated supplier of chemical intermediates in China, ensuring a stable and dependable supply of Ethyl 4-oxocyclohexanecarboxylate. Trust us to manage your procurement efficiently, from inquiry to delivery.

Key Application Areas

Organic Synthesis

Ethyl 4-oxocyclohexanecarboxylate serves as a fundamental building block in diverse organic synthesis processes, facilitating the creation of more complex molecular structures for various industries.

Pharmaceutical Intermediates

Its unique structure makes it valuable for synthesizing pharmaceutical intermediates, contributing to the development of new therapeutic agents. Researchers often buy this compound for R&D purposes.

Cosmetic Formulations

The compound finds applications in the cosmetic industry, potentially contributing to fragrance profiles or as a component in specialized skincare formulations, offering unique chemical properties.

Material Science

Explore its potential use in material science research and development, where its chemical reactivity can be leveraged for novel material creation and modification.