(R)-tert-Butyl 4-(Hydroxymethyl)-2,2-Dimethyloxazolidine-3-Carboxylate: Your Trusted Pharmaceutical Intermediate Supplier in China

Discover the critical role of (R)-tert-butyl 4-(hydroxymethyl)-2,2-dimethyloxazolidine-3-carboxylate (CAS 108149-63-9) as a high-purity pharmaceutical intermediate. Sourced from leading manufacturers in China, this versatile chiral building block is essential for advanced organic synthesis and drug development. Partner with us for reliable supply and competitive pricing.

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Advantages of Partnering with Our Chemical Supplier

Uncompromised Quality and Purity

Our (R)-tert-butyl 4-(hydroxymethyl)-2,2-dimethyloxazolidine-3-carboxylate is rigorously tested to meet the highest purity standards, critical for your pharmaceutical synthesis and diagnostic reagent development. We are a trusted supplier for consistent quality.

Expertise in Chiral Synthesis Intermediates

Leverage our expertise in providing advanced chiral building blocks. This compound is invaluable for researchers aiming to buy complex intermediates for novel drug discovery and development.

Streamlined Procurement from China

Benefit from efficient sourcing and competitive pricing from our established manufacturing base in China. We facilitate seamless international transactions for all your chemical procurement needs.

Key Applications in Pharmaceutical and Chemical Industries

Pharmaceutical Synthesis

This intermediate is indispensable for synthesizing Active Pharmaceutical Ingredients (APIs) and complex drug molecules, ensuring the development of effective therapies.

Diagnostic Reagent Development

Its high purity makes it an ideal component for the formulation of advanced diagnostic reagents, contributing to accurate and reliable medical testing.

Chiral Molecule Construction

Serves as a fundamental building block for creating specific enantiomers, crucial in fields requiring stereoselective synthesis.

Custom Synthesis Projects

An excellent starting material for custom synthesis projects, allowing researchers to explore novel chemical entities and pathways.