AH56815
Packsize | Purity | Availability | Price | Discounted Price | Quantity | |
---|---|---|---|---|---|---|
5mg | 95% | in stock | $65.00 | $45.00 | - + | |
10mg | 95% | in stock | $92.00 | $64.00 | - + | |
100mg | 95% | in stock | $178.00 | $124.00 | - + | |
250mg | 95% | in stock | $270.00 | $189.00 | - + | |
500mg | 95% | in stock | $413.00 | $289.00 | - + | |
1g | 95% | in stock | $662.00 | $463.00 | - + | |
5g | 95% | in stock | $2,500.00 | $1,750.00 | - + |
*All products are for research use only and not intended for human or animal use.
*All prices are in USD.
Catalog Number: | AH56815 |
Chemical Name: | Benvitimod |
CAS Number: | 79338-84-4 |
Molecular Formula: | C17H18O2 |
Molecular Weight: | 254.3236 |
MDL Number: | MFCD13193203 |
SMILES: | CC(c1c(O)cc(cc1O)/C=C/c1ccccc1)C |
(E)-3,5-Dihydroxy-4-isopropylstilbene, also known as $name$, plays a crucial role in chemical synthesis as a versatile building block. This compound is highly valued for its unique chemical structure and reactivity, making it an ideal starting material for the synthesis of various advanced organic molecules.In chemical synthesis, (E)-3,5-Dihydroxy-4-isopropylstilbene serves as a key intermediate in the production of complex organic compounds, including pharmaceuticals, agrochemicals, and materials. Its hydroxyl groups and stilbene backbone make it a valuable precursor for the construction of more complex molecules through functional group transformations.One of the key applications of (E)-3,5-Dihydroxy-4-isopropylstilbene in chemical synthesis is its role as a core component in the synthesis of polyphenolic compounds. By utilizing the hydroxyl groups and the conjugated double bonds present in the molecule, chemists can introduce various functional groups and linkages to create tailored polyphenolic structures with desired properties.Furthermore, (E)-3,5-Dihydroxy-4-isopropylstilbene can be used in the synthesis of natural products and bioactive molecules due to its ability to undergo diverse chemical reactions, such as oxidation, reduction, and coupling reactions. Its structural features make it a valuable starting point for the design and synthesis of novel compounds with potential applications in the fields of medicine, agriculture, and materials science.