Cas no 1646795-59-6 (6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide)
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide Chemical and Physical Properties
Names and Identifiers
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- KC01
- KC01 (ABHD16A inhibitor KC01)
- 6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide
-
- Inchi: 1S/C22H39NO3/c1-2-3-4-5-6-7-8-9-10-11-14-17-20-19(22(25)26-20)16-13-12-15-18-21(23)24/h16,20H,2-15,17-18H2,1H3,(H2,23,24)/b19-16-
- InChI Key: RJBBAPPWVJEOMC-MNDPQUGUSA-N
- SMILES: C(N)(=O)CCCC/C=C1/C(CCCCCCCCCCCCC)OC/1=O
Experimental Properties
- Color/Form: Solid powder
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide Security Information
- Signal Word:Warning
- Storage Condition:Dry, dark and store at 0-4℃ for short term (days to weeks) or -20℃ for long term (Store correctly 2-3years).
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| WU HAN AN JIE KAI Biomedical Technology Co., Ltd. | ajci9820-1mg |
KC01 |
1646795-59-6 | 98% | 1mg |
¥4013.00 | 2023-09-09 | |
| WU HAN AN JIE KAI Biomedical Technology Co., Ltd. | ajci9820-500ug |
KC01 |
1646795-59-6 | 98% | 500ug |
¥2187.00 | 2023-09-09 | |
| MedChemExpress | HY-120299-1mg |
KC01 |
1646795-59-6 | 1mg |
¥4200 | 2024-07-21 | ||
| 1PlusChem | 1P01EPVR-1mg |
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide |
1646795-59-6 | ≥98% | 1mg |
$259.00 | 2024-06-19 | |
| A2B Chem LLC | AX65543-1mg |
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide |
1646795-59-6 | ≥98% | 1mg |
$180.00 | 2024-04-20 |
6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide Related Literature
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A. B. F. da Silva,K. Capelle Phys. Chem. Chem. Phys., 2009,11, 4564-4569
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Shintaro Takata,Yoshihiro Miura Phys. Chem. Chem. Phys., 2014,16, 24784-24789
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Eric Besson,Stéphane Gastaldi,Emily Bloch,Selma Aslan,Hakim Karoui,Olivier Ouari,Micael Hardy Analyst, 2019,144, 4194-4203
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Jason Wan Lab Chip, 2020,20, 4528-4538
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Zhiyan Chen,Nan Wu,Yaobing Wang,Bing Wang,Yingde Wang J. Mater. Chem. A, 2018,6, 516-526
Additional information on 6Z-(2-oxo-4-tridecyl-3-oxetanylidene),hexanamide
6Z-(2-Oxo-4-Tridecyl-3-Oxetanylidene), Hexanamide: A Comprehensive Overview
The compound 6Z-(2-Oxo-4-Tridecyl-3-Oxetanylidene), Hexanamide (CAS No. 1646795-59-6) is a unique organic compound with significant potential in various chemical and biochemical applications. This compound belongs to the class of oxetane derivatives, which have garnered considerable attention in recent years due to their versatile properties and functionalities. The structure of this compound is characterized by a six-membered ring system with specific substituents that contribute to its distinct chemical behavior.
Recent studies have highlighted the importance of oxetane derivatives in drug delivery systems and polymer chemistry. The oxetane ring in this compound serves as a reactive site, enabling it to participate in various chemical reactions, such as ring-opening polymerization and click chemistry. These reactions are pivotal in the development of advanced materials, including biodegradable polymers and stimuli-responsive hydrogels. The presence of the tridecyl group further enhances the compound's hydrophobicity, making it suitable for applications in amphiphilic materials and surfactants.
The hexanamide moiety in this compound plays a crucial role in determining its physical and chemical properties. Amides are known for their ability to form hydrogen bonds, which can influence the solubility and stability of the compound. This feature makes 6Z-(2-Oxo-4-Tridecyl-3-Oxetanylidene), Hexanamide a promising candidate for use in drug formulation, where solubility and bioavailability are critical factors. Additionally, the amide group can act as a site for further functionalization, enabling the creation of more complex molecular architectures.
One of the most intriguing aspects of this compound is its stereochemistry. The Z configuration at the sixth position of the hexanamide chain introduces steric hindrance, which can influence both its reactivity and biological activity. Stereoisomerism is a key factor in pharmacology, as it can significantly affect how a molecule interacts with biological targets. Recent research has explored the stereochemical outcomes of reactions involving oxetane derivatives, shedding light on their potential as chiral building blocks in asymmetric synthesis.
The synthesis of 6Z-(2-Oxo-4-Tridecyl-3-Oxetanylidene), Hexanamide involves a multi-step process that combines organic synthesis techniques with advanced catalytic methods. The formation of the oxetane ring typically requires specific catalysts, such as transition metal complexes or acid catalysts, to facilitate the cyclization reaction. The introduction of the tridecyl group and hexanamide moiety involves careful control over reaction conditions to ensure high yields and purity.
In terms of applications, this compound has shown promise in several emerging fields. For instance, its ability to undergo controlled polymerization makes it a valuable precursor for biodegradable polymers, which are increasingly sought after in sustainable materials science. Additionally, its amphiphilic nature makes it an excellent candidate for use in drug delivery systems, where it can serve as a carrier for hydrophobic drugs or enhance drug solubility.
Recent advancements in computational chemistry have also provided deeper insights into the electronic structure and reactivity of this compound. Quantum mechanical calculations have revealed that the oxetane ring exhibits unique electronic properties that can be exploited in designing new reaction pathways. These findings underscore the importance of theoretical studies in complementing experimental research for a comprehensive understanding of complex molecules.
In conclusion, 6Z-(2-Oxo-4-Tridecyl-3-Oxetanylidene), Hexanamide (CAS No. 1646795-59-6) is a versatile compound with significant potential across multiple disciplines. Its unique structure, stereochemistry, and functional groups make it an attractive target for both fundamental research and applied development. As ongoing studies continue to uncover new properties and applications, this compound is poised to play an increasingly important role in advancing modern chemistry and materials science.
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