Cas no 28544-93-6 (1,4-dioxepan-6-one)
1,4-dioxepan-6-one Chemical and Physical Properties
Names and Identifiers
-
- 4-dioxepan-6-one
- LogP
- 1,4-Dioxepan-6-one
- [1,4]Dioxepan-6-one
- DTXSID00676800
- SCHEMBL3727885
- ZBEJPWPZAMESBJ-UHFFFAOYSA-N
- DB-086637
- AT36791
- 28544-93-6
- EN300-92185
- AKOS015918359
- 1,4-dioxepan-6-one
-
- MDL: MFCD11865273
- Inchi: 1S/C5H8O3/c6-5-3-7-1-2-8-4-5/h1-4H2
- InChI Key: ZBEJPWPZAMESBJ-UHFFFAOYSA-N
- SMILES: O1CC(COCC1)=O
Computed Properties
- Exact Mass: 116.04734
- Monoisotopic Mass: 116.047344113g/mol
- Isotope Atom Count: 0
- Hydrogen Bond Donor Count: 0
- Hydrogen Bond Acceptor Count: 3
- Heavy Atom Count: 8
- Rotatable Bond Count: 0
- Complexity: 79.7
- Covalently-Bonded Unit Count: 1
- Defined Atom Stereocenter Count: 0
- Undefined Atom Stereocenter Count : 0
- Defined Bond Stereocenter Count: 0
- Undefined Bond Stereocenter Count: 0
- XLogP3: -0.4
- Topological Polar Surface Area: 35.5?2
Experimental Properties
- PSA: 35.53
1,4-dioxepan-6-one Pricemore >>
| Related Categories | No. | Product Name | Cas No. | Purity | Specification | Price | update time | Inquiry |
|---|---|---|---|---|---|---|---|---|
| TRC | D486315-1000mg |
1,4-Dioxepan-6-one |
28544-93-6 | 1g |
$1642.00 | 2023-05-18 | ||
| TRC | D486315-100mg |
1,4-Dioxepan-6-one |
28544-93-6 | 100mg |
$207.00 | 2023-05-18 | ||
| TRC | D486315-1g |
1,4-Dioxepan-6-one |
28544-93-6 | 1g |
$ 1360.00 | 2022-06-05 | ||
| Enamine | EN300-92185-0.05g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 0.05g |
$218.0 | 2024-05-21 | |
| Enamine | EN300-92185-0.1g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 0.1g |
$326.0 | 2024-05-21 | |
| Enamine | EN300-92185-0.25g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 0.25g |
$466.0 | 2024-05-21 | |
| Enamine | EN300-92185-0.5g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 0.5g |
$735.0 | 2024-05-21 | |
| Enamine | EN300-92185-1.0g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 1.0g |
$943.0 | 2024-05-21 | |
| Enamine | EN300-92185-2.5g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 2.5g |
$1848.0 | 2024-05-21 | |
| Enamine | EN300-92185-5.0g |
1,4-dioxepan-6-one |
28544-93-6 | 95% | 5.0g |
$2732.0 | 2024-05-21 |
1,4-dioxepan-6-one Suppliers
1,4-dioxepan-6-one Related Literature
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Yaling Zhang,Chunhui Dai,Shiwei Zhou,Bin Liu Chem. Commun., 2018,54, 10092-10095
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Yiding Jiao,Liqun Kang,Jasper Berry-Gair,Kit McColl,Jianwei Li,Haobo Dong,Hao Jiang,Ryan Wang,Furio Corà,Dan J. L. Brett,Ivan P. Parkin J. Mater. Chem. A, 2020,8, 22075-22082
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Denis V. Korchagin,Elena A. Yureva,Alexander V. Akimov,Eugenii Ya. Misochko,Gennady V. Shilov,Artem D. Talantsev,Roman B. Morgunov,Alexander A. Shakin,Sergey M. Aldoshin,Boris S. Tsukerblat Dalton Trans., 2017,46, 7540-7548
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Yukiya Kitayama Polym. Chem., 2014,5, 2784-2792
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Alexandre Vimont,Arnaud Travert,Philippe Bazin,Jean-Claude Lavalley,Marco Daturi,Christian Serre,Gérard Férey,Sandrine Bourrelly,Philip L. Llewellyn Chem. Commun., 2007, 3291-3293
Additional information on 1,4-dioxepan-6-one
Comprehensive Guide to 1,4-Dioxepan-6-one (CAS No. 28544-93-6): Properties, Applications, and Industry Insights
1,4-Dioxepan-6-one (CAS No. 28544-93-6) is a cyclic ester with a unique molecular structure, making it a versatile compound in polymer chemistry and specialty materials. Its seven-membered ring and lactone functionality have garnered attention for applications ranging from biodegradable plastics to pharmaceutical intermediates. As sustainability and green chemistry dominate global discussions, researchers are increasingly exploring 1,4-dioxepan-6-one derivatives for eco-friendly alternatives to conventional polymers.
The compound’s thermal stability and reactivity make it a valuable monomer for synthesizing poly(1,4-dioxepan-6-one), a material studied for its potential in medical devices and controlled-release drug delivery systems. Recent studies highlight its compatibility with ring-opening polymerization (ROP) techniques, a hot topic in materials science due to its precision in creating tailored macromolecules. Searches for "biodegradable lactones 2024" or "ROP monomers for medical applications" reflect growing interest in this niche.
From an industrial perspective, 1,4-dioxepan-6-one is often compared to ε-caprolactone and lactide, two widely used lactones. However, its lower melting point and enhanced solubility in organic solvents offer distinct advantages in formulation flexibility. Manufacturers focusing on high-performance coatings or adhesives frequently evaluate its incorporation to improve product properties. Keywords like "sustainable polymer additives" and "cyclic ester reactivity" align with current market trends.
Analytical characterization of CAS 28544-93-6 typically involves NMR spectroscopy and mass spectrometry to confirm purity and structural integrity. Quality control protocols emphasize the absence of residual solvents, a critical factor for pharmaceutical-grade applications. For researchers, questions such as "How to synthesize 1,4-dioxepan-6-one?" or "Safety data sheet for 28544-93-6" are common search queries, underscoring the need for accessible technical documentation.
Emerging applications in 3D printing resins and bio-based composites further expand the compound’s relevance. As circular economy principles gain traction, 1,4-dioxepan-6-one’s biodegradability profile positions it as a candidate for next-generation materials. Industry reports on "green polymer innovations" often cite its potential, driving demand for specialized suppliers. Regulatory compliance, particularly regarding REACH and FDA approvals, remains a key consideration for commercial adoption.
In summary, 1,4-dioxepan-6-one (CAS No. 28544-93-6) bridges academic research and industrial innovation, with its utility spanning from advanced material science to sustainable chemistry. Its alignment with global priorities—such as reducing carbon footprints and developing safer biomaterials—ensures continued exploration and optimization in the coming decade.
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