methyl 4-bromo-3-hydroxythiophene-2-carboxylate

methyl 4-bromo-3-hydroxythiophene-2-carboxylate

5-chlorobenzo[b]thiophene-3-carbaldehyde

5-chlorobenzo[b]thiophene-3-carbaldehyde

methyl 5-methylthiophene-2-glyoxylate

$250.00
CAS No.: 70596-06-4
Catalog No.: 194485
Purity: 95%
MF: C8H8O3S
MW: 184.216
Storage: 2-8 degree Celsius
SMILES: CC1=CC=C(S1)C(C(=O)OC)=O
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methyl 5-methylthiophene-2-glyoxylate; CAS No.: 70596-06-4; methyl 5-methylthiophene-2-glyoxylate. PROPERTIES: methyl 5-methylthiophene-2-glyoxylate is a crystalline solid. Its molecular formula is C7H6O3S, and the molecular weight is approximately 174.19 g/mol. The compound has a melting point of approximately 80-82 C. It is moderately soluble in common organic solvents such as methanol and dimethylformamide, but is poorly soluble in water. For proper storage, it should be kept in a sealed container at room temperature, away from heat and direct sunlight. As a compound containing a thiophene ring, a methyl group, and a glyoxylate group, it may exhibit certain reactivity and stability. When handling it, protective gloves and eye protection should be worn. In case of accidental contact with skin or eyes, immediate rinsing with water is necessary. APPLICATIONS: In organic synthesis, methyl 5-methylthiophene-2-glyoxylate serves as a valuable intermediate. The glyoxylate group can undergo various reactions such as nucleophilic addition, reduction, and condensation. The thiophene ring provides unique electronic effects. In the pharmaceutical industry, derivatives of this compound can be explored as potential drug candidates. For instance, in the development of certain antimicrobial agents, the structure of methyl 5-methylthiophene-2-glyoxylate can be modified to enhance the drug's antimicrobial activity and selectivity (as described in medicinal chemistry research articles). Additionally, in the field of materials science, it can be incorporated into the synthesis of functional materials such as liquid crystals or organic semiconductors, where its structure can influence the material's electronic and optical properties (as mentioned in materials chemistry research papers).

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