4,5-Dicyanoimidazole: A Key Intermediate for Oligonucleotide Synthesis and Organic Chemistry

Discover the pivotal role of 4,5-Dicyanoimidazole (CAS 1122-28-7) in advancing scientific research and chemical synthesis, serving as a critical component for innovative applications.

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Advantages Offered by the Product

Enhanced Synthesis Efficiency

The application of 4,5-dicyanoimidazole in oligonucleotide synthesis significantly boosts reaction efficiency, making it a preferred choice for researchers focused on complex DNA and RNA sequencing and modification.

Versatile Chemical Reactivity

As a key organic synthesis building block, 4,5-dicyanoimidazole offers versatile reactivity, enabling the creation of novel nucleosides and complex molecular structures with high precision.

Effective Tetrazole Alternative

Providing a reliable alternative to tetrazole activators, this compound offers a favorable combination of nucleophilicity and acidity, simplifying and improving organic synthesis processes.

Key Applications

Oligonucleotide Synthesis

A primary use of 4,5-dicyanoimidazole is in facilitating efficient oligonucleotide synthesis, a critical process for genetic research and therapeutic development.

Organic Synthesis

Its role as an organic synthesis building block allows for the creation of diverse and complex molecules, vital for drug discovery and materials science.

Pharmaceutical Development

The compound is instrumental in the synthesis of nucleoside phosphoramidites and novel nucleosides, paving the way for new pharmaceutical agents.

Material Science Research

Beyond its biological applications, 4,5-dicyanoimidazole shows promise in material science, contributing to the development of novel functional materials with unique properties.