2-Cyanoethyl N,N,N',N'-tetraisopropylphosphorodiamidite: Synthesis, Applications, and Supply

Discover the essential role of 2-Cyanoethyl N,N,N',N'-tetraisopropylphosphorodiamidite in modern biotechnology. As a leading manufacturer and supplier, we provide high-purity reagents crucial for oligonucleotide synthesis and advanced chemical research. Explore our product details and how to secure your supply chain.

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Key Advantages for Your Research

Enhanced Reactivity for Oligonucleotide Assembly

The diisopropylamino leaving group in this phosphoramidite is readily cleaved by azole catalysts, enabling highly efficient coupling reactions with nucleosides. This makes it a prime choice for purchase when seeking optimized oligonucleotide synthesis.

Superior Stability and Handling

This reagent offers improved stability compared to chlorophosphoramidites, simplifying handling and storage. This benefit is critical for researchers and procurement managers looking for dependable chemical suppliers.

Versatility in Nucleic Acid Chemistry

Widely utilized in the preparation of both modified and unmodified nucleoside phosphoramidites, this compound is fundamental for advanced research in nucleic acid chemistry, making it a valuable addition to any chemist's toolkit.

Diverse Applications in Biotechnology

Oligonucleotide Synthesis

As a critical building block, it's essential for the automated, solid-phase synthesis of DNA and RNA sequences, supporting researchers who buy reagents for molecular biology.

Nucleoside Phosphoramidite Preparation

This reagent is key for preparing modified nucleoside phosphoramidites, which are crucial for creating custom nucleic acid structures with unique functionalities.

Biotechnology Research

Its application extends to various areas of biotechnology, facilitating complex molecular synthesis and research into genetic therapies and diagnostics.

Chemical Synthesis

Beyond nucleic acids, it serves as a valuable phosphitylating agent in broader organic synthesis projects, offering reliability for demanding applications.