High Purity Dimethyl (1-diazo-2-oxopropyl)phosphonate CAS 90965-06-3: A Key Reagent for Organic Synthesis

Discover the critical role of Dimethyl (1-diazo-2-oxopropyl)phosphonate (CAS 90965-06-3) in advancing organic synthesis and pharmaceutical development. This high-purity chemical serves as an indispensable tool for chemists seeking precision and efficiency in creating complex molecules. Explore its applications and learn why partnering with a trusted manufacturer and supplier in China is essential for your R&D needs.

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Advantages of Sourcing Our Dimethyl (1-diazo-2-oxopropyl)phosphonate

Unmatched Chemical Purity

With a guaranteed purity of 99% min (HPLC), our Dimethyl (1-diazo-2-oxopropyl)phosphonate ensures the integrity and success of your critical synthesis, making it a preferred choice for pharmaceutical intermediates and fine chemical manufacturers.

Expertise in Synthesis Reagents

Leverage our deep expertise as a dedicated supplier and manufacturer of specialized organic synthesis reagents, including those for alkyne synthesis and complex heterocyclic formations, essential for R&D and production scales.

Reliable Supply Chain & Competitive Pricing

As a China-based manufacturer, we offer a stable supply chain and attractive pricing for Dimethyl (1-diazo-2-oxopropyl)phosphonate, allowing you to purchase high-quality materials efficiently for your chemical formulation needs.

Key Applications in Modern Chemistry

Pharmaceutical Synthesis

This compound is a critical pharmaceutical intermediate, facilitating the creation of novel drug candidates and improving existing drug manufacturing processes. Purchase this essential building block for your R&D.

Organic Synthesis & Homologation

Its primary role in Seyferth–Gilbert homologation makes it invaluable for synthesizing terminal alkynes, a vital step for many complex organic molecules sought by researchers globally.

Agrochemical Development

The compound's utility extends to agrochemical formulations, contributing to the development of effective pesticides and herbicides, and we are a prime supplier for these needs.

Heterocyclic Compound Formation

Used in 1,3-dipolar cycloaddition reactions, it enables the synthesis of diverse nitrogen-containing heterocycles, crucial for medicinal chemistry and materials science advancements.