Fmoc-AMOX, identified by CAS number 1370440-28-0, is a chemical compound that has garnered attention in the fields of organic synthesis and life sciences, particularly for its role in peptide chemistry. This article provides a detailed look at its chemical characteristics and significance for chemists and scientists.
At its core, Fmoc-AMOX is recognized for its structure, N-(((9H-fluoren-9-yl)methoxy)carbonyloxy)-2-amino-2-oxoacetimidoyl cyanide. This molecular architecture imparts specific reactivity that makes it a valuable component in sophisticated synthesis routes. Its utility as a pharmaceutical intermediate stems from its ability to participate in crucial bond formations within more complex molecules.
Chemists frequently encounter Fmoc-AMOX when performing solid-phase peptide synthesis (SPPS). In this context, it acts as a reagent that facilitates the efficient coupling of amino acids, a cornerstone process for building peptide chains. The reliability of this coupling step directly influences the yield and purity of the final peptide product. Researchers often seek to buy Fmoc-AMOX with high purity, typically exceeding 98% via HPLC, to ensure optimal performance.
Beyond peptide synthesis, Fmoc-AMOX can be utilized in other areas of organic chemistry as a versatile building block. Its distinct functional groups allow for various transformations, making it attractive for synthesizing novel compounds with potential applications in materials science or medicinal chemistry. Sourcing this intermediate from reputable manufacturers is key to accessing its full potential.
For those looking to procure Fmoc-AMOX, understanding its specifications, such as molecular weight (335.31 g/mol) and common appearance (white solid powder), is essential. Working with a trusted supplier or manufacturer ensures that these specifications are met consistently. When evaluating suppliers, it is common to inquire about pricing and bulk order availability to optimize research budgets.
In essence, Fmoc-AMOX is more than just a chemical compound; it's a critical tool that enables advancements in peptide-based research and pharmaceutical development. By understanding its chemical properties and sourcing it from reliable manufacturers, scientists can confidently incorporate it into their synthesis strategies.
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