High-Purity (Fmoc-Cys-OtBu)2: A Key Pharmaceutical Intermediate Supplier

Discover the critical role of Bis(2-methyl-2-propanyl) N,N'-bis[(9H-fluoren-9-ylmethoxy)carbonyl]-L-cystinate (CAS: 139592-37-3) in advancing pharmaceutical research and development. As a leading manufacturer and supplier in China, we provide high-purity (Fmoc-Cys-OtBu)2 essential for complex organic synthesis and peptide drug development.

Get a Quote & Sample

Advantages of Sourcing Our (Fmoc-Cys-OtBu)2

Superior Purity for Complex Syntheses

Our (Fmoc-Cys-OtBu)2 boasts a purity of ≥98%, making it an ideal choice for intricate organic synthesis and peptide coupling reactions, ensuring optimal yield and product integrity. This high purity is essential when you buy pharmaceutical intermediates.

Reliable Pharmaceutical Intermediate Supply

We are a dedicated manufacturer and supplier of pharmaceutical intermediates, ensuring consistent availability of (Fmoc-Cys-OtBu)2. Our efficient supply chain allows us to meet the demands of research institutions and pharmaceutical companies globally.

Expertise in Amino Acid Derivatives

Leverage our deep knowledge in amino acid derivatives and their applications in medicinal chemistry. We provide essential building blocks like (Fmoc-Cys-OtBu)2 to support your innovative drug development processes.

Key Applications of (Fmoc-Cys-OtBu)2

Peptide Synthesis

This compound is indispensable in solid-phase peptide synthesis (SPPS) and solution-phase peptide synthesis, serving as a protected amino acid derivative crucial for building complex peptide chains. Consider our (Fmoc-Cys-OtBu)2 when you need to buy peptide synthesis reagents.

Drug Discovery & Development

As a vital pharmaceutical intermediate, (Fmoc-Cys-OtBu)2 plays a significant role in the synthesis of various APIs and novel drug candidates, particularly those targeting therapeutic areas like oncology. Partner with a reliable supplier for your drug discovery pipeline.

Organic Synthesis Research

Researchers utilize (Fmoc-Cys-OtBu)2 in various organic synthesis pathways due to its specific chemical functionalities, contributing to the creation of new molecules and advanced materials. Explore our catalog to purchase specialized organic synthesis intermediates.

Biomedical Applications

The structural characteristics of (Fmoc-Cys-OtBu)2 make it valuable in exploring new biomedical applications and the development of advanced biomaterials. Discover how our intermediates can elevate your research.