In the intricate landscape of modern chemical synthesis, the availability of versatile and high-quality reagents is crucial for innovation and efficiency. Tert-boc-aminooxyacetic acid, widely known as Boc-AOA, is a prime example of such an essential chemical intermediate. Identified by its CAS number 42989-85-5, this compound is highly valued for its bifunctional nature and the strategic utility of its Boc-protected aminooxy group. This article highlights the significant applications of Boc-AOA, particularly in peptide chemistry and drug design, and emphasizes the importance of sourcing from reputable manufacturers and suppliers.
Boc-AOA serves as a cornerstone reagent in numerous synthetic pathways due to its dual functionality. The tert-butyloxycarbonyl (Boc) group offers a readily removable protecting strategy, ensuring that the aminooxy functionality can be selectively manipulated. This aminooxy group possesses a potent reactivity profile, readily engaging in nucleophilic addition reactions with carbonyl compounds like aldehydes and ketones to form stable oxime linkages. This characteristic is particularly exploited in:
For procurement managers and research scientists, securing a consistent supply of high-purity Boc-aminooxyacetic acid is essential. A purity level of u226598% (HPLC) ensures the integrity of complex synthetic reactions and minimizes potential contamination issues. Identifying established chemical manufacturers and suppliers, particularly those with a strong presence in manufacturing hubs like China, is a strategic move. These sources often provide not only competitive pricing but also guarantee product quality through rigorous testing and documentation, such as Certificates of Analysis. When planning to buy, exploring bulk purchase options can lead to significant cost efficiencies.
In conclusion, Boc-AOA (Tert-boc-aminooxyacetic acid) is a versatile and highly sought-after reagent in modern chemical synthesis. Its applications in peptide chemistry, drug design, and bioconjugation underscore its importance. By prioritizing high purity and selecting reliable manufacturers and suppliers, researchers and procurement professionals can ensure the successful execution of their projects, driving innovation in the chemical and pharmaceutical industries.
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