Interesting facts
Interesting Facts About 6-Heptyltetrahydropyran-2-one
6-Heptyltetrahydropyran-2-one is a fascinating organic compound that belongs to the class of tetrahydropyranones, an intriguing subgroup of cyclic compounds. It offers a wealth of interesting characteristics worth noting:
- Natural Occurrence: This compound can be found in certain natural products, making it relevant in the field of natural chemistry. It has garnered attention for its potential applications in flavor and fragrance formulations due to its unique odor profile.
- Flavoring Agent: Due to its pleasant aroma, 6-heptyltetrahydropyran-2-one has been identified as a potential flavoring agent in the food and beverage industry. Its unique structure makes it an interesting candidate for developing innovative flavors.
- Chemical Structure: The structure of 6-heptyltetrahydropyran-2-one features a tetrahydropyran ring, which contributes to its stability and reactivity. The heptyl group greatly influences its physical properties and reactivity patterns.
- Synthesis Routes: Chemists have developed several synthetic pathways to produce this compound. Each method showcases ingenuity, often involving steps such as cyclization and functional group modifications to achieve the final product.
- Research Potential: Ongoing studies are exploring the biomedical applications of 6-heptyltetrahydropyran-2-one, including its activities as a potential therapeutic agent. Investigating its bioactivity can lead to new insights into pharmaceutical chemistry.
Overall, the study of 6-heptyltetrahydropyran-2-one opens up a variety of avenues in research, ranging from natural product chemistry to its potential use in culinary applications. As our understanding of such compounds evolves, we may unveil even more of their capabilities and applications.
Synonyms
DELTA-DODECALACTONE
713-95-1
6-Heptyltetrahydro-2H-pyran-2-one
5-Dodecanolide
Dodecan-5-olide
2H-Pyran-2-one, 6-heptyltetrahydro-
5-Dodecalactone
Dodecanolide-1,5
5-Hydroxydodecanoic acid lactone
xi-5-Dodecanolide
.delta.-Dodecalactone
n-Heptyl-delta-valerolactone
delta-Dodecalactone (natural)
FEMA No. 2401
delta-Heptyl-delta-valerolactone
HSDB 292
Dodecanoic acid, 5-hydroxy-, delta-lactone
EINECS 211-932-4
DELTALACTONE
33DIC582TL
6-Heptyl-tetrahydropyran-2-one
AI3-36030
.delta.-Heptyl-.delta.-valerolactone
.DELTA.-DODECANE LACTONE
DTXSID9047596
DELTA-DODECALACTONE [FCC]
Dodecanoic acid, 5-hydroxy-, .delta.-lactone
DELTA-DODECALACTONE [HSDB]
EC 211-932-4
.DELTA.-DODECALACTONE [MI]
(R,S)-.DELTA.-DODECALACTONE
.DELTA.-DODECALACTONE [FHFI]
AI 3-36030
5Dodecalactone
5Dodecanolide
Dodecanolide1,5
nHeptyldeltavalerolactone
deltaHeptyldeltavalerolactone
deltaDodecalactone (natural)
DELTA-DODECANE LACTONE
5Hydroxydodecanoic acid lactone
2HPyran2one, 6heptyltetrahydro
DTXCID7027596
(R,S)-DELTA-DODECALACTONE
5-Hydroxydodecanoic acid, delta-lactone
Dodecanoic acid, 5hydroxy, deltalactone
211-932-4
(+-)-.delta.-dodecalactone
(+-)-delta-dodecalactone
6-heptyloxan-2-one
(+/-)-5-Dodecanolide
MFCD00006651
(+/-)-.DELTA.-DODECALACTONE
(+/-)-delta-Heptyl-delta-valerolactone
d-Dodecalactone
d-Dodecalactone, mixture of isomers
UNII-33DIC582TL
delta-Laurolactone
6-heptyl-2-oxanone
5-Hydroxydodecanoic acid delta-lactone
5-Dodecanolide, 99%
(+/-)-delta-dodecalactone
SCHEMBL114922
n-Heptyl-.delta.-valerolactone
CHEMBL4636895
6-heptyl-tetrahydro-pyran-2-one
QRPLZGZHJABGRS-UHFFFAOYSA-
CHEBI:171817
5-Hydroxydodecanoic acid d-lactone
delta-Dodecalactone, >=97%, FG
BBL027600
LMFA07040040
STL373783
2H-Pyran-2-one, tetrahydro-6-heptyl
AKOS015915485
CS-W010531
SB47814
delta-Dodecalactone, analytical standard
DS-11405
SY015678
5-Hydroxydodecanoic acid, .delta.-lactone
(+/-)-6-Heptyltetrahydro-2H-pyran-2-one
DB-055522
D1414
NS00009933
D70226
A837171
delta-Dodecalactone;6-Heptyltetrahydro-2H-pyran-2-one
Q27256257
3051-22-7
InChI=1/C12H22O2/c1-2-3-4-5-6-8-11-9-7-10-12(13)14-11/h11H,2-10H2,1H3
Solubility of 6-heptyltetrahydropyran-2-one
The solubility of 6-heptyltetrahydropyran-2-one presents some intriguing characteristics due to its structural components. This compound, containing a tetrahydropyran ring and a long heptyl chain, exhibits solubility behaviors influenced by both polar and nonpolar interactions.
Possible solubility scenarios include:
Understanding the solubility of 6-heptyltetrahydropyran-2-one is essential for its applications in synthesis and formulation, as it can affect reactivity, efficacy, and stability. Therefore, it is always recommended to conduct solubility testing under specific conditions to obtain precise insights into its behavior.