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752-13-6

Riboflavin, 2',3',4',5'-tetraacetate

Catalog#: AR00GG8P  |   CAS#: 752-13-6  |   MDL#:  |   MF: C25H28N4O10  |   MW: 544.5106

Packsize Purity Price Availability Quantity
100mg 95% $50.00 Global Stock Buy Now Add To Cart
250mg 95% $85.00 Global Stock Buy Now Add To Cart
1g 95% $227.00 Global Stock Buy Now Add To Cart
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Catalog Number AR00GG8P
Chemical Name Riboflavin, 2',3',4',5'-tetraacetate
CAS Number 752-13-6
Molecular Formula C25H28N4O10
Molecular Weight 544.5106
SMILES CC(=O)OC(C(C(OC(=O)C)COC(=O)C)OC(=O)C)Cn1c2-c(nc3c1cc(C)c(c3)C)c(=O)[nH]c(=O)n2

Riboflavin, 2′,3′,4′,5′-tetraacetate is a valuable compound in chemical synthesis due to its versatility in various applications. As a derivative of riboflavin (vitamin B2), this tetraacetate form opens up a wide range of possibilities in organic chemistry.One important application of Riboflavin, 2′,3′,4′,5′-tetraacetate is in the field of medicinal chemistry. Its unique structure makes it a useful precursor for the synthesis of new drugs and pharmaceutical compounds. By incorporating this molecule into the design of potential therapeutics, researchers can explore novel pathways for drug development and innovation.Additionally, Riboflavin, 2′,3′,4′,5′-tetraacetate can be utilized in the synthesis of complex organic molecules. Its acetylated form provides stability and reactivity that can be harnessed in multi-step synthetic routes to access intricate chemical structures. Chemists can leverage the selective reactivity of the acetyl groups to control the direction of chemical transformations, enabling the construction of diverse molecular architectures.Furthermore, this compound has found applications in the development of functional materials. By incorporating Riboflavin, 2′,3′,4′,5′-tetraacetate into polymeric systems or nanomaterials, scientists can impart specific properties such as light responsiveness or biocompatibility. The unique properties of this derivative make it a promising candidate for the design of advanced materials with tailored functionalities.In summary, Riboflavin, 2′,3′,4′,5′-tetraacetate plays a crucial role in chemical synthesis, offering opportunities for innovation in drug discovery, organic synthesis, and materials science. Its diverse applications highlight the significance of this compound in advancing research and development across various disciplines.
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