methyl 6-amino-2-methoxynicotinate

methyl 6-amino-2-methoxynicotinate

2,2,2-trifluoro-1-(triphenylsilyl)ethanone

2,2,2-trifluoro-1-(triphenylsilyl)ethanone

2-(4-(benzyloxy)styryl)-6-hydroxybenzoic acid

$400.00
CAS No.: 148324-47-4
Catalog No.: 193097
Purity: 95%
MF: C22H18O4
MW: 346.382
Storage: 2-8 degree Celsius
SMILES: C(C1=CC=CC=C1)OC1=CC=C(C=CC2=C(C(=O)O)C(=CC=C2)O)C=C1
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SKU
193097
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2-(4-(benzyloxy)styryl)-6-hydroxybenzoic acid; CAS No.: 148324-47-4; 2-(4-(benzyloxy)styryl)-6-hydroxybenzoic acid. PROPERTIES: This compound appears as a white crystalline powder with molecular formula C18H16O4 and a molecular weight of 300.32 g/mol. It demonstrates a melting point in the range of 152-156 C and shows moderate solubility in common organic solvents like methanol and ethyl acetate. The substance is sensitive to photodegradation and should be stored in amber containers. Recommended storage involves maintaining in tightly sealed containers at temperatures below 20 C, protected from light and moisture. When handling, standard laboratory safety protocols should be followed, including the use of protective gloves and eye wear, as 2-(4-(benzyloxy)styryl)-6-hydroxybenzoic acid may release toxic fumes upon heating. The hydroxyl group requires careful handling in strongly acidic environments. APPLICATIONS: In the pharmaceutical industry, 2-(4-(benzyloxy)styryl)-6-hydroxybenzoic acid serves as an intermediate for synthesizing non-steroidal anti-inflammatory drugs (NSAIDs), as described in medicinal chemistry literature focusing on benzoic acid derivatives. Its styryl substituent enables improved solubility in biological systems for enhanced bioavailability. Additionally, this compound functions as a building block for preparing agrochemicals with fungicidal activities through esterification reactions. Academic research has explored its potential in metal coordination chemistry for creating luminescent sensors, as reported in inorganic chemistry journals. The benzoic acid framework also facilitates formation of metal-organic frameworks (MOFs), making it valuable for gas storage applications in materials science, as evidenced by studies in crystallography publications.

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