Items 101 to 110 of 233 total
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Berninamycin A | 58798-97-3 | sc-202077 sc-202077A | 1 mg 5 mg | $250.00 $1014.00 | ||
Berninamycin A is a rare and high-purity compound characterized by its unique reactivity as an acid halide, which allows for selective acylation reactions. Its distinct molecular structure enables it to engage in specific electrophilic interactions, influencing reaction kinetics and pathways. The compound's high stability and solubility in various solvents make it an intriguing subject for exploring its role in organic synthesis and its potential to form complex derivatives, enhancing our understanding of chemical reactivity. | ||||||
Teicoplanin Complex | 61036-62-2 | sc-202355 sc-202355A | 25 mg 50 mg | $111.00 $141.00 | 3 | |
Teicoplanin Complex is a rare and high-purity compound distinguished by its intricate molecular architecture, which facilitates unique hydrogen bonding and steric interactions. This compound exhibits remarkable selectivity in nucleophilic attack, leading to diverse reaction pathways. Its exceptional solubility profile and stability under varying conditions allow for in-depth studies of its reactivity, making it a compelling candidate for investigating complex chemical behaviors and interactions in synthetic chemistry. | ||||||
Phomopsin A | 64925-80-0 | sc-202282 sc-202282A sc-202282B | 1 mg 5 mg 10 mg | $490.00 $1300.00 $2200.00 | 1 | |
Phomopsin A is a rare and high-purity compound characterized by its unique structural features that promote specific molecular interactions. Its distinct stereochemistry enables selective binding to target sites, influencing reaction kinetics and pathways. The compound's high solubility in various solvents enhances its reactivity, allowing for detailed exploration of its behavior in complex chemical systems. Additionally, its stability under diverse conditions makes it an intriguing subject for advanced chemical research. | ||||||
Antibiotic LL Z1640-4 | 66018-41-5 | sc-202056 sc-202056A | 1 mg 5 mg | $211.00 $745.00 | 1 | |
Antibiotic LL Z1640-4 is a rare and high-purity compound distinguished by its intricate molecular architecture, which facilitates unique interactions with biological macromolecules. Its selective reactivity is attributed to specific functional groups that engage in targeted binding, influencing enzymatic pathways. The compound exhibits remarkable stability across a range of pH levels, making it an excellent candidate for studying reaction dynamics and mechanistic pathways in complex biochemical environments. | ||||||
Dihydroavermectin B1a | 70161-11-4 | sc-202138 | 5 mg | $327.00 | 1 | |
Dihydroavermectin B1a is a rare and high-purity compound characterized by its unique stereochemistry, which enhances its affinity for specific receptors. This compound demonstrates distinct solubility properties, allowing for varied interactions in diverse environments. Its kinetic profile reveals a selective reactivity that can modulate molecular pathways, while its robust stability under varying conditions makes it an intriguing subject for exploring complex chemical behaviors and interactions. | ||||||
Dihydroavermectin B1b | 70209-81-3 | sc-202139 sc-202139-CW | 500 µg 500 µg | $307.00 $464.00 | 1 | |
Dihydroavermectin B1b is a rare and high-purity compound distinguished by its intricate molecular structure, which facilitates unique intermolecular interactions. Its high selectivity in binding to target sites showcases its potential for specific reactivity patterns. The compound exhibits remarkable stability across a range of conditions, allowing for detailed studies of its kinetic behavior and the exploration of its role in various chemical pathways, making it a subject of interest in advanced research. | ||||||
Luzopeptin A | 75580-37-9 | sc-202214 | 1 mg | $288.00 | 8 | |
Luzopeptin A is a rare and high-purity compound characterized by its exceptional ability to form stable complexes with metal ions, enhancing its reactivity in various chemical environments. Its unique structural features promote selective interactions with specific substrates, leading to distinct reaction kinetics. The compound's solubility properties and stability under diverse conditions make it an intriguing subject for exploring novel reaction mechanisms and molecular dynamics in advanced chemical studies. | ||||||
Marcfortine A | 75731-43-0 | sc-202222 | 1 mg | $361.00 | 3 | |
Marcfortine A is a rare and high-purity compound distinguished by its unique ability to engage in selective hydrogen bonding and π-π stacking interactions, which significantly influence its reactivity. This compound exhibits remarkable stability in polar solvents, allowing for intricate molecular interactions that facilitate complex reaction pathways. Its distinct stereochemistry contributes to unique conformational dynamics, making it a fascinating subject for studies in molecular behavior and reaction mechanisms. | ||||||
Paraherquamide A | 77392-58-6 | sc-202275 | 1 mg | $334.00 | ||
Paraherquamide A is a rare and high-purity compound characterized by its exceptional capacity for forming strong intermolecular interactions, particularly through dipole-dipole interactions and hydrogen bonding. This compound demonstrates unique solubility properties, enhancing its reactivity in various environments. Its intricate molecular structure allows for diverse conformational isomerism, which can lead to distinct kinetic profiles in chemical reactions, making it an intriguing subject for exploring molecular dynamics and reaction pathways. | ||||||
Milbemycin D | 77855-81-3 | sc-202228 sc-202228-CW sc-202228A | 1 mg 1 mg 5 mg | $395.00 $793.00 $1375.00 | 2 | |
Milbemycin D is a rare and high-purity compound distinguished by its unique stereochemistry, which facilitates selective binding to specific receptors. This compound exhibits remarkable stability under various conditions, allowing for prolonged activity in diverse environments. Its ability to form complexation with metal ions enhances its reactivity, while its low volatility contributes to its persistence in chemical systems. The intricate arrangement of functional groups enables diverse interaction pathways, making it a fascinating subject for advanced chemical studies. | ||||||