High Purity 4,6-Dimethoxy-2-(phenoxycarbonyl)aminopyrimidine CAS 89392-03-0: Your Key Organic Synthesis Intermediate

Discover the critical importance of purity in organic synthesis with 4,6-Dimethoxy-2-(phenoxycarbonyl)aminopyrimidine (CAS 89392-03-0). As a leading manufacturer and supplier, we ensure you get the quality you need for pharmaceutical and fine chemical applications. Get a quote today!

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Key Advantages of Our Organic Synthesis Intermediates

Uncompromised Purity Levels

Our 4,6-Dimethoxy-2-(phenoxycarbonyl)aminopyrimidine (CAS 89392-03-0) boasts a minimum purity of 98%, significantly reducing side reactions and simplifying purification, which is vital for R&D scientists aiming for reproducible results in complex organic synthesis.

Consistent Quality from China Manufacturer

As a dedicated supplier in China, we implement rigorous quality assurance processes. This guarantees that every batch of our CAS 89392-03-0 meets the highest industry standards, providing product formulators with the reliability they need.

Competitive Pricing for Your Needs

We offer competitive pricing for 4,6-Dimethoxy-2-(phenoxycarbonyl)aminopyrimidine, making high-quality chemical procurement accessible for businesses worldwide. Contact us to buy this essential pharmaceutical intermediate.

Diverse Applications of Our Chemical Intermediates

Pharmaceutical Development

Utilize our high-purity CAS 89392-03-0 as a crucial intermediate in the synthesis of novel APIs, enhancing drug efficacy and safety. Explore procurement options from our trusted supplier network.

Fine Chemical Synthesis

Leverage the consistent quality of 4,6-Dimethoxy-2-(phenoxycarbonyl)aminopyrimidine for complex molecule construction, ensuring predictable outcomes and optimizing synthesis routes.

Research and Development

R&D scientists can rely on our product's superior purity for accurate experimental design and reproducible results in pioneering chemical research. Ask about samples and purchase information.

Agrochemical Formulation Support

While primarily for organic synthesis, this intermediate's structural elements can be relevant in the broader fine chemical landscape, including potential explorations in agrochemical intermediate development.