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Atomfair Methyl anisate C9H10O3
Description Methyl Anisate (Methyl 4-Methoxybenzoate) is a high-purity ester compound with the molecular formula C9H10O3and CAS number 121-98-2. This aromatic ester is widely utilized in organic synthesis, fragrance formulation, and pharmaceutical research due to its stable chemical properties and pleasant odor. As a derivative of benzoic acid, Methyl Anisate exhibits excellent solubility in organic solvents such as ethanol, ether, and chloroform, making it ideal for laboratory applications. Our product is rigorously tested for purity (>98%) and consistency, ensuring reliable performance in sensitive experiments. Available in various quantities, from grams to kilograms, to meet both research and industrial-scale demands.
Description
Description
Methyl Anisate (Methyl 4-Methoxybenzoate) is a high-purity ester compound with the molecular formula C9H10O3 and CAS number 121-98-2. This aromatic ester is widely utilized in organic synthesis, fragrance formulation, and pharmaceutical research due to its stable chemical properties and pleasant odor. As a derivative of benzoic acid, Methyl Anisate exhibits excellent solubility in organic solvents such as ethanol, ether, and chloroform, making it ideal for laboratory applications. Our product is rigorously tested for purity (>98%) and consistency, ensuring reliable performance in sensitive experiments. Available in various quantities, from grams to kilograms, to meet both research and industrial-scale demands.
- CAS No: 121-98-2
- Molecular Formula: C9H10O3
- Molecular Weight: 166.17
- Exact Mass: 166.062994177
- Monoisotopic Mass: 166.062994177
- IUPAC Name: methyl 4-methoxybenzoate
- SMILES: COC1=CC=C(C=C1)C(=O)OC
- Synonyms: METHYL 4-METHOXYBENZOATE, 121-98-2, Methyl p-anisate, Methyl anisate, Benzoic acid, 4-methoxy-, methyl ester
Application
Methyl Anisate is commonly employed as a flavor and fragrance intermediate in the food and cosmetics industries. It serves as a key precursor in the synthesis of pharmaceuticals, particularly in the production of UV absorbers and preservatives. Researchers also utilize this compound in organic chemistry studies due to its role as a model substrate for esterification and transesterification reactions.
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