AX54996
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
100mg | 95% | in stock | $603.00 | $422.00 | - + | |
250mg | 95% | in stock | $1,178.00 | $824.00 | - + | |
1g | 95% | in stock | $3,277.00 | $2,294.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AX54996 |
Chemical Name: | Methyl 4-chloro-6-methylpyridine-2-carboxylate |
CAS Number: | 1206250-28-3 |
Molecular Formula: | C8H8ClNO2 |
Molecular Weight: | 185.6076 |
MDL Number: | MFCD09839162 |
SMILES: | COC(=O)c1cc(Cl)cc(n1)C |
Complexity: | 174 |
Covalently-Bonded Unit Count: | 1 |
Heavy Atom Count: | 12 |
Hydrogen Bond Acceptor Count: | 3 |
Rotatable Bond Count: | 2 |
XLogP3: | 2.1 |
Methyl 4-chloro-6-methylpyridine-2-carboxylate, also known as $name$, is a key intermediate in chemical synthesis processes. This compound serves as a versatile building block in the creation of various organic compounds due to its unique structural properties.In chemical synthesis, $name$ can be utilized as a precursor in the formation of complex molecular structures. Its functional groups enable it to participate in reactions such as esterifications, nucleophilic substitutions, and ring formations. By incorporating $name$ into a synthetic pathway, chemists can manipulate its substituents to introduce specific functionalities or stereochemical features into the final product.Furthermore, the presence of the methyl and chloro substituents on the pyridine ring of $name$ confers both steric and electronic influences, which can be strategically leveraged to control the reactivity and regioselectivity of subsequent chemical transformations. This control over reactivity makes $name$ a valuable tool for tailoring the properties of synthesized compounds for various applications in pharmaceuticals, agrochemicals, materials science, and more.Overall, the application of Methyl 4-chloro-6-methylpyridine-2-carboxylate in chemical synthesis offers chemists a pathway to access diverse chemical space and customize molecular structures with precision and control.