High Purity 6-Nitroindazole CAS 7597-18-4: A Key Pharmaceutical Intermediate Supplier

Discover 6-Nitroindazole (CAS: 7597-18-4), a critical pharmaceutical intermediate with 99% purity, essential for the synthesis of advanced therapeutics like Axitinib. As a leading manufacturer and supplier in China, we provide unparalleled quality and reliability for your R&D and production needs.

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Why Choose Us as Your 6-Nitroindazole Manufacturer

Guaranteed Quality & Consistency

We adhere to rigorous quality control measures, including ISO and GMP certifications, ensuring that every batch of our 6-Nitroindazole meets the highest standards. This commitment makes us a reliable manufacturer for pharmaceutical applications.

Competitive Pricing and Availability

As a direct supplier in China, we offer competitive prices for high-purity 6-Nitroindazole. Benefit from our consistent production capacity and readily available stock to avoid supply chain disruptions and secure your purchase.

Expert Support and Customization

Our experienced technical team provides comprehensive support, from sample requests to custom synthesis solutions. We are dedicated to meeting your specific project requirements when you buy 6-Nitroindazole.

Key Applications of 6-Nitroindazole

Axitinib Synthesis

6-Nitroindazole (CAS: 7597-18-4) is a fundamental intermediate in the multi-step synthesis of Axitinib, a potent tyrosine kinase inhibitor used in cancer therapy. Its purity is paramount for the efficacy of the final drug.

Targeted Drug Therapies

As a specialized heterocyclic compound, it serves as a key starting material for developing novel molecules with therapeutic potential, contributing to advancements in oncology and neurology research.

Pharmaceutical Research & Development

This compound is widely used in R&D laboratories for exploring new drug candidates and optimizing synthetic routes. Its reliable quality makes it a go-to reagent for scientists.

Organic Synthesis Building Block

Its unique chemical structure makes it a versatile building block in broader organic synthesis, enabling the creation of complex molecular architectures.