AA05973
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
1g | 97% | in stock | $105.00 | $74.00 | - + | |
5g | 97% | in stock | $386.00 | $270.00 | - + | |
10g | 97% | in stock | $698.00 | $489.00 | - + | |
25g | 97% | in stock | $1,319.00 | $923.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AA05973 |
Chemical Name: | 3,6-Dimethoxylpyridazine-4-boronic acid |
CAS Number: | 1015480-87-1 |
Molecular Formula: | C6H9BN2O4 |
Molecular Weight: | 183.9577 |
MDL Number: | MFCD10700157 |
SMILES: | COc1nnc(c(c1)B(O)O)OC |
Complexity: | 160 |
Covalently-Bonded Unit Count: | 1 |
Heavy Atom Count: | 13 |
Hydrogen Bond Acceptor Count: | 6 |
Hydrogen Bond Donor Count: | 2 |
Rotatable Bond Count: | 3 |
(3,6-Dimethoxypyridazin-4-yl)boronic acid, also known as $name$, is an essential building block in modern chemical synthesis. This versatile compound plays a crucial role as a reagent in organic reactions, particularly in the field of boronic acid chemistry.In chemical synthesis, (3,6-Dimethoxypyridazin-4-yl)boronic acid is commonly used as a boron source in Suzuki-Miyaura cross-coupling reactions. This powerful and widely employed method allows for the formation of carbon-carbon bonds under mild conditions, enabling the efficient assembly of complex organic molecules. By serving as a key component in this reaction, (3,6-Dimethoxypyridazin-4-yl)boronic acid facilitates the construction of a diverse range of chemical structures with high precision and control.Additionally, (3,6-Dimethoxypyridazin-4-yl)boronic acid is utilized in the synthesis of pharmaceuticals, agrochemicals, and materials science research. Its unique properties and reactivity make it an indispensable tool for synthetic chemists seeking to access new compounds and study their properties.Overall, (3,6-Dimethoxypyridazin-4-yl)boronic acid is a valuable reagent in chemical synthesis, enabling the efficient and selective formation of carbon-carbon bonds to create novel molecules with diverse applications.