Fmoc-D-Dap(Alloc)-OH, identified by its CAS number 178924-05-5, is a highly valuable compound in the realm of organic synthesis. Its unique chemical structure, featuring both Fmoc and Alloc protecting groups on a D-diaminopropionic acid backbone, makes it an exceptionally versatile building block. This derivative plays a significant role in the synthesis of complex molecules, especially in areas requiring precise stereochemical control and selective functionalization.

The molecular weight of approximately 410.42 g/mol and a stated purity often exceeding 99% are testament to the rigorous manufacturing processes employed by its producers. The presence of the Fmoc group on the alpha-amino position and the Alloc group on the side-chain amino position allows chemists to strategically manipulate the molecule during multi-step syntheses. This orthogonality is a cornerstone of advanced synthetic strategies, enabling chemists to selectively unmask specific functional groups as needed. This makes Fmoc-D-Dap(Alloc)-OH an attractive choice for those seeking reliable reagents for their complex organic synthesis projects.

Beyond its primary use in peptide chemistry, Fmoc-D-Dap(Alloc)-OH finds application in the development of new pharmaceutical agents and as a chiral scaffold in the creation of intricate organic molecules. Researchers actively seeking this compound often look for competitive prices and consistent availability from international suppliers. Understanding the chemical properties of Fmoc-D-Dap(Alloc)-OH is crucial for its effective utilization in various synthetic pathways. Whether for creating novel drug candidates or exploring new chemical reactions, this amino acid derivative proves to be an indispensable tool.

The global market for specialty chemicals like Fmoc-D-Dap(Alloc)-OH is robust, with numerous companies offering this product. Identifying a trusted manufacturer that guarantees high enantiomeric purity is essential for projects where stereochemistry is critical. The ongoing demand for innovative solutions in pharmaceuticals and materials science ensures that compounds like Fmoc-D-Dap(Alloc)-OH will remain central to the progress of organic chemistry.