Items 41 to 50 of 412 total
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Tris, Hydrochloride | 1185-53-1 | sc-216106 sc-216106A sc-216106B | 500 g 1 kg 25 kg | $60.00 $90.00 $2200.00 | 1 | |
Tris, Hydrochloride, as an alcohol, demonstrates notable properties through its capacity for strong ionic interactions, particularly in aqueous environments. This compound exhibits a unique ability to stabilize charged species, facilitating proton transfer processes. Its structure allows for effective solvation dynamics, influencing reaction rates and equilibria. Additionally, the presence of multiple functional groups contributes to its versatility in forming complexes, impacting its reactivity in various chemical contexts. | ||||||
MMP-2 Inhibitor I | 10335-69-0 | sc-204092 | 10 mg | $167.00 | 19 | |
MMP-2 Inhibitor I, classified as an alcohol, showcases intriguing characteristics through its ability to engage in hydrogen bonding, enhancing molecular stability and solubility in polar solvents. Its structural framework promotes specific steric interactions, which can modulate reaction pathways and kinetics. The compound's hydrophilic nature allows for effective solvation, influencing its reactivity and facilitating interactions with various substrates in diverse chemical environments. | ||||||
2-[4-(tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl]ethan-1-ol | 651030-55-6 | sc-506710 | 1 g | $291.00 | ||
2-[4-(Tetramethyl-1,3,2-dioxaborolan-2-yl)phenyl]ethan-1-ol exhibits intriguing steric and electronic characteristics due to its bulky boron-containing group. This structure facilitates unique hydrogen bonding interactions, enhancing solubility in polar solvents. The compound's alcohol functionality allows for versatile reactivity, including participation in nucleophilic substitution and esterification reactions, while its dioxaborolane moiety can engage in reversible coordination with metal ions, influencing catalytic processes. | ||||||
2-Hydroxyglutaric Acid Disodium Salt | 40951-21-1 | sc-206458 | 25 mg | $278.00 | ||
2-Hydroxyglutaric Acid Disodium Salt, as an alcohol, exhibits notable properties through its capacity for chelation and coordination with metal ions, which can influence catalytic processes. Its dual hydroxyl groups enhance its polarity, promoting solubility in aqueous environments. The compound's unique stereochemistry allows for specific conformational arrangements, potentially affecting its reactivity and interactions with other biomolecules, thereby altering reaction dynamics in various chemical contexts. | ||||||
Hydroxyfasudil Hydrochloride | 155558-32-0 | sc-202176 | 10 mg | $300.00 | 3 | |
Hydroxyfasudil Hydrochloride, as an alcohol, showcases intriguing characteristics through its ability to form hydrogen bonds, enhancing its solubility in polar solvents. The presence of a hydroxyl group contributes to its reactivity, facilitating nucleophilic attacks in various chemical reactions. Additionally, its structural conformation can influence intermolecular interactions, potentially affecting the kinetics of reactions and the stability of complexes formed with other molecules. | ||||||
Mequindox | 16915-79-0 | sc-357371 | 25 mg | $375.00 | ||
Mequindox exhibits intriguing properties as an alcohol, particularly due to its ability to engage in hydrogen bonding and form stable complexes with various solvents. Its unique structure allows for selective reactivity in oxidation reactions, where it can act as a mild oxidizing agent. The compound's hydrophilic characteristics enhance its solubility in polar solvents, facilitating its participation in diverse chemical pathways and influencing its kinetic behavior in reactions involving alcohols. | ||||||
11-Methyldodecanol | 85763-57-1 | sc-483700 sc-483700A | 250 mg 2.5 g | $340.00 $2400.00 | ||
11-Methyldodecanol is a branched-chain alcohol notable for its unique steric configuration, which affects its solubility and interaction with other molecules. The presence of the hydroxyl group allows for significant hydrogen bonding, enhancing its affinity for polar environments. Its hydrophobic tail contributes to its role in surfactant behavior, influencing interfacial tension. Additionally, it can undergo oxidation, leading to the formation of aldehydes or ketones, further diversifying its chemical reactivity. | ||||||
D-myo-Inositol 1-monophosphate dipotassium salt | 573-35-3 | sc-211182A sc-211182 sc-211182B | 1 mg 5 mg 20 mg | $70.00 $260.00 $870.00 | ||
D-myo-Inositol 1-monophosphate dipotassium salt exhibits unique properties as an alcohol, particularly through its capacity to engage in ionic interactions due to its dipotassium salt form. This enhances its solubility in aqueous environments and promotes effective ion exchange processes. The presence of multiple hydroxyl groups allows for extensive hydrogen bonding, influencing its reactivity and stability in various chemical systems, while also affecting the dynamics of molecular interactions. | ||||||
2-Amino-5-(hydroxymethyl)pyridine | 113293-71-3 | sc-506723 | 1 g | $265.00 | ||
2-Amino-5-(hydroxymethyl)pyridine is characterized by its unique ability to engage in hydrogen bonding due to the presence of both amino and hydroxymethyl groups. This property facilitates its role in stabilizing transition states during chemical reactions, enhancing reaction rates. The compound's electron-donating characteristics also promote its participation in nucleophilic attacks, making it a key player in various organic transformations. Its structural flexibility contributes to diverse reactivity patterns in synthetic pathways. | ||||||
4-Methylumbelliferyl β-D-glucuronide | 6160-80-1 | sc-280452 sc-280452A sc-280452B | 2 g 20 g 50 g | $316.00 $444.00 $877.00 | 1 | |
4-Methylumbelliferyl β-D-glucuronide functions as an alcohol, characterized by its ability to participate in hydrophilic interactions due to its glucuronide moiety. This compound exhibits notable fluorescence properties, which can be influenced by solvent polarity. Its structure allows for specific enzyme-substrate interactions, facilitating unique reaction pathways. The presence of the methylumbelliferyl group enhances its reactivity, making it a versatile participant in biochemical assays. | ||||||