Fmoc-OSu: High-Purity Amino Protecting Reagent for Peptide Synthesis

Discover Fmoc-OSu, a leading reagent for efficient amino group protection in peptide synthesis. As a trusted manufacturer and supplier, we provide high-purity Fmoc-OSu essential for pharmaceutical intermediates and complex organic synthesis. Secure your quote and sample today.

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Key Advantages of Our Fmoc-OSu

Superior Reactivity and Selectivity

Fmoc-OSu offers superior efficiency in amino protection compared to alternatives like Fmoc-Cl, with fewer side reactions and simpler reaction conditions. This makes it an ideal choice for research scientists and formulators seeking dependable outcomes in their peptide synthesis workflows.

Stability and Ease of Handling

Our Fmoc-OSu is characterized by its excellent chemical stability, especially under acidic conditions, and can be readily deprotected using mild alkaline solutions like piperidine. This stability ensures a longer shelf life and simplifies handling in laboratory settings.

Cost-Effective Sourcing

We provide competitive Fmoc-OSu prices, making high-quality peptide synthesis reagents accessible for bulk purchase. As a direct manufacturer, we ensure cost-effectiveness without compromising on the purity or performance demanded by the fine chemical industry.

Diverse Applications for Fmoc-OSu

Peptide Synthesis

Fmoc-OSu is fundamental for solid-phase and liquid-phase peptide synthesis, enabling the controlled formation of peptide bonds and the creation of complex peptide sequences for research and pharmaceutical development.

Pharmaceutical Intermediates

Utilized as a critical intermediate in the production of peptide-based drugs and APIs, our high-grade Fmoc-OSu supports the development of therapeutics for various medical conditions.

Organic Synthesis

Beyond peptides, Fmoc-OSu serves as a valuable reagent in general organic synthesis for introducing the Fmoc protecting group onto amino functionalities in diverse molecular structures.

Biochemical Research

Researchers rely on Fmoc-OSu for synthesizing modified amino acids and creating novel glycopeptides, advancing fields like proteomics, glycobiology, and drug discovery.