Pyrazine, 3-methoxy-2,5-dimethyl-


Chemical Name: Pyrazine, 3-methoxy-2,5-dimethyl-
CAS Number: 19846-22-1
Product Number: AG002BJG(AGN-PC-0JTCC9)
Synonyms:
MDL No:
Molecular Formula: C7H10N2O
Molecular Weight: 138.1671

Identification/Properties


Computed Properties
Molecular Weight:
138.17g/mol
XLogP3:
0.8
Hydrogen Bond Donor Count:
0
Hydrogen Bond Acceptor Count:
3
Rotatable Bond Count:
1
Exact Mass:
138.079g/mol
Monoisotopic Mass:
138.079g/mol
Topological Polar Surface Area:
35A^2
Heavy Atom Count:
10
Formal Charge:
0
Complexity:
108
Isotope Atom Count:
0
Defined Atom Stereocenter Count:
0
Undefined Atom Stereocenter Count:
0
Defined Bond Stereocenter Count:
0
Undefined Bond Stereocenter Count:
0
Covalently-Bonded Unit Count:
1
Compound Is Canonicalized:
Yes

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Chemical Structure



3-Methoxy-2,5-dimethylpyrazine is a key compound widely utilized in chemical synthesis for its unique properties and versatile applications. This chemical plays a crucial role as a building block in the creation of various organic compounds. Specifically, it acts as a valuable intermediate in the synthesis of complex molecules, making it an essential component in the pharmaceutical, agrochemical, and fragrance industries.In chemical synthesis, 3-Methoxy-2,5-dimethylpyrazine serves as a precursor for the production of numerous functional compounds. Its molecular structure enables it to participate in a diverse range of reactions, allowing for the formation of new organic substances with enhanced properties. This compound is commonly used to introduce specific functional groups or structural motifs into target molecules, thereby influencing their biological activity or physical characteristics.Moreover, the presence of a methoxy group in 3-Methoxy-2,5-dimethylpyrazine confers additional reactivity and selectivity in chemical transformations. This structural feature enables precise modification of the compound, leading to the synthesis of novel derivatives with tailored properties. By incorporating 3-Methoxy-2,5-dimethylpyrazine into synthetic pathways, chemists can access a wide array of structurally diverse compounds, laying the foundation for the development of innovative materials and compounds with various applications.