AB74518
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
100mg | 99% | in stock | $87.00 | $61.00 | - + | |
250mg | 99% | in stock | $105.00 | $73.00 | - + | |
1g | 99% | in stock | $206.00 | $144.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AB74518 |
Chemical Name: | GOLD(I) IODIDE |
CAS Number: | 10294-31-2 |
Molecular Formula: | AuI |
Molecular Weight: | 323.8710 |
MDL Number: | MFCD08700411 |
SMILES: | I[Au] |
Gold(I) iodide, also known as AuI, is a versatile chemical reagent widely used in organic synthesis for its unique properties and reactions. As a transition metal complex, Gold(I) iodide exhibits exceptional catalytic activity in a variety of organic transformations, making it a valuable tool for chemists in the development of new molecules and materials.One key application of Gold(I) iodide is its role as a catalyst in the synthesis of organic compounds through various reactions such as hydroamination, hydroalkoxylation, and cycloisomerization. In hydroamination reactions, AuI catalyzes the addition of an amine across a carbon-carbon double bond, facilitating the formation of valuable nitrogen-containing compounds. The hydroalkoxylation reaction involves the addition of an alcohol to an alkene under gold catalysis, leading to the synthesis of ether derivatives. Additionally, Gold(I) iodide can promote cycloisomerization reactions, allowing for the formation of cyclic compounds with high efficiency and selectivity.Furthermore, Gold(I) iodide is known for its ability to activate C-H bonds, enabling direct functionalization of carbon-hydrogen bonds in organic molecules. This property is particularly valuable in the synthesis of complex structures, as it provides a more sustainable and direct approach to modifying organic molecules.Overall, the versatile catalytic properties of Gold(I) iodide make it a valuable tool for synthetic chemists seeking novel and efficient methods for the preparation of diverse organic compounds with high selectivity and yield.