Items 201 to 210 of 223 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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N-Phenylbenzimidoyl chloride | 4903-36-0 | sc-236083 | 1 g | $115.00 | ||
N-Phenylbenzimidoyl chloride, an imine derivative, exhibits unique reactivity as an acid chloride, facilitating acylation reactions with amines and alcohols. Its electrophilic nature allows for rapid nucleophilic attack, leading to the formation of stable imine intermediates. The presence of the benzimidoyl group enhances steric hindrance, influencing reaction kinetics and selectivity. Additionally, its ability to form strong intermolecular interactions can affect solubility and crystallization behavior in various solvents. | ||||||
N-(4-Phenylbenzylidene)benzylamine | 118578-71-5 | sc-253070 | 1 g | $75.00 | ||
N-(4-Phenylbenzylidene)benzylamine, an intriguing imine, exhibits unique structural characteristics that facilitate strong π-π stacking interactions due to its extended aromatic system. This property enhances its stability and influences its reactivity in condensation reactions. The presence of multiple aromatic rings contributes to a rigid conformation, affecting the kinetics of nucleophilic attacks. Additionally, its ability to form hydrogen bonds can alter solubility and reactivity in various solvents, making it a versatile compound in synthetic chemistry. | ||||||
3-Aminobenzamidine dihydrochloride | 37132-68-6 | sc-231468 | 1 g | $69.00 | ||
3-Aminobenzamidine dihydrochloride, a notable imine, features a distinct arrangement that promotes strong hydrogen bonding and electrostatic interactions. These characteristics enhance its reactivity in condensation and coupling reactions, allowing for efficient formation of more complex structures. The presence of amino and amidine functional groups contributes to its unique electronic properties, influencing reaction kinetics and selectivity in various chemical environments. Its solubility profile is also affected by the dihydrochloride form, impacting its behavior in diverse solvent systems. | ||||||
(1E)-indan-1-one oxime | 3349-60-8 | sc-339235 sc-339235A | 1 g 5 g | $208.00 $625.00 | ||
(1E)-indan-1-one oxime, an intriguing imine, exhibits unique stereoelectronic properties that facilitate selective nucleophilic attacks. Its planar structure allows for effective π-stacking interactions, enhancing stability in certain reaction conditions. The oxime functional group can engage in tautomerization, influencing reaction pathways and kinetics. Additionally, its ability to form stable complexes with metal ions can alter catalytic behaviors, making it a versatile participant in various chemical transformations. | ||||||
Dimethyl pimelimidate dihydrochloride | 58537-94-3 | sc-268943 sc-268943A | 250 mg 1 g | $60.00 $74.00 | 1 | |
Dimethyl pimelimidate dihydrochloride, a notable imine, showcases distinctive reactivity due to its bifunctional nature, enabling efficient formation of covalent bonds with nucleophiles. Its rigid structure promotes specific steric interactions, influencing reaction selectivity. The presence of the imine group allows for dynamic equilibria, facilitating diverse reaction pathways. Additionally, its solubility in polar solvents enhances its accessibility for various coupling reactions, making it a key player in synthetic chemistry. | ||||||
Glyoxal-bis(2-hydroxyanil) | 1149-16-2 | sc-250064 | 25 g | $128.00 | ||
Glyoxal-bis(2-hydroxyanil) exhibits unique properties as an imine, characterized by its ability to form stable chelate complexes through hydrogen bonding and π-π stacking interactions. This compound's dual hydroxyl groups enhance its reactivity, allowing for selective electrophilic attacks. Its structural rigidity contributes to defined conformational states, influencing reaction kinetics and pathways. Furthermore, its solubility in organic solvents facilitates its role in various condensation reactions, making it a versatile intermediate in synthetic applications. | ||||||
Methyl (2,4-dimethylphenyl) cyanocarbonimido-dithioate | sc-337904 | 1 g | $535.00 | |||
Methyl (2,4-dimethylphenyl) cyanocarbonimido-dithioate stands out as an imine due to its unique dithioate functional groups, which enhance nucleophilicity and facilitate diverse reaction pathways. The compound's steric hindrance from the dimethyl substituents influences its reactivity, promoting selective interactions with electrophiles. Additionally, its ability to engage in intramolecular interactions can stabilize transition states, thereby affecting reaction kinetics and product formation in various synthetic processes. | ||||||
ML-233 | sc-487760 | 10 mg | $340.00 | |||
ML-233 exhibits intriguing properties as an imine, characterized by its ability to form stable complexes through π-π stacking interactions. The presence of electron-withdrawing groups enhances its electrophilic character, allowing for rapid reactions with nucleophiles. Its unique steric environment influences the regioselectivity of reactions, while the potential for tautomerization introduces dynamic behavior in solution. These features contribute to its distinctive reactivity in synthetic applications. | ||||||
Hexamethylguanidinium-pentafluoroethanolate | 479024-70-9 | sc-327920 sc-327920A | 1 g 25 g | $2225.00 $12000.00 | ||
Hexamethylguanidinium-pentafluoroethanolate demonstrates remarkable behavior as an imine, showcasing a propensity for strong hydrogen bonding and dipole-dipole interactions. Its highly polar structure facilitates unique solvation dynamics, influencing reaction rates and pathways. The compound's steric hindrance plays a crucial role in dictating selectivity during nucleophilic attacks, while its ability to engage in resonance stabilization enhances its reactivity profile in various chemical environments. | ||||||
({[(1E)-(4-methoxyphenyl)methylene]amino}oxy)acetic acid | sc-345271 sc-345271A | 250 mg 1 g | $197.00 $399.00 | |||
({[(1E)-(4-methoxyphenyl)methylene]amino}oxy)acetic acid exhibits intriguing characteristics as an imine, particularly through its capacity for intramolecular hydrogen bonding, which stabilizes its conformation. The presence of the methoxy group enhances electron donation, influencing electrophilic reactivity. Its unique steric arrangement affects molecular interactions, leading to selective reactivity in condensation reactions. Additionally, the compound's polar nature promotes solubility in various solvents, impacting its kinetic behavior in chemical transformations. |