Date published: 2026-1-6

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3-Ethylcyclopentanone (CAS 10264-55-8)

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CAS Number:
10264-55-8
Purity:
99%
Molecular Weight:
112.17
Molecular Formula:
C7H12O
Supplemental Information:
This is as a Dangerous Good for transport and may be subject to additional shipping charges.
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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3-Ethylcyclopentanone,a cyclic ketone, is a colorless liquid has a distinct, unpleasant smell and is used in numerous scientific studies. It can dissolve in many organic solvents and has limited solubility in water. Among its potential applications, 3-Ethylcyclopentanone is valuable in crafting chiral molecules and agrochemicals. Additionally, it serves as an ingredient for flavor and fragrance in both the food and cosmetic sectors.


3-Ethylcyclopentanone (CAS 10264-55-8) References

  1. Changes in volatile profiles of a refrigerated-reheated xylose-cysteine-lecithin reaction model analyzed by GC×GC-MS and E-nose  |   and Zheqi Zhang, Mingwu Zang, Kaihua Zhang, Dan Li, Shouwei Wang, Xiaoman Li, Huimin Zhou, Xi Zhang. Journal of Food Science,. 87(3): 1069-1081.
  2. Highly enantioselective 1,4-addition of diorganozinc reagents to cyclic enones using chiral diphosphite ligands derived from H8-binaphthol.  |  Liang, L., et al. 2002. Org Lett. 4: 3799-801. PMID: 12599462
  3. Convulsant and anticonvulsant cyclopentanones and cyclohexanones.  |  Holland, KD., et al. 1990. Mol Pharmacol. 37: 98-103. PMID: 2153913
  4. Pulling the levers of photophysics: how structure controls the rate of energy dissipation.  |  Kuhlman, TS., et al. 2013. Angew Chem Int Ed Engl. 52: 2247-50. PMID: 23325458
  5. Influence of physicochemical characteristics and high pressure processing on the volatile fraction of Iberian dry-cured ham.  |  Martínez-Onandi, N., et al. 2017. Meat Sci. 131: 40-47. PMID: 28463751
  6. Searching for Potential Markers of Glomerulopathy in Urine by HS-SPME-GC×GC TOFMS.  |  Ligor, T., et al. 2021. Molecules. 26: PMID: 33804943
  7. Catalytic Transformation of Biomass-Derived Furfurals to Cyclopentanones and Their Derivatives: A Review.  |  Dutta, S. and Bhat, NS. 2021. ACS Omega. 6: 35145-35172. PMID: 34984249
  8. Cancer metabolomics: A tool of clinical utility for early diagnosis of gynaecological cancers.  |  Karekar, AK. and Dandekar, SP. 2021. Indian J Med Res. 154: 787-796. PMID: 35662083
  9. Chemical Characterization of the Marking Fluid of Breeding and Non-Breeding Male Cheetahs.  |  Tommasi, A., et al. 2022. Animals (Basel). 12: PMID: 36078003
  10. Conjugate addition of diorganozincs to α,β-unsaturated ketones catalyzed by a copper(I)-sulfonamide combined system  |  M Kitamura, T Miki, K Nakano, R Noyori. 1996. Tetrahedron Letters. 37(29): 5141-5144.
  11. Copper-catalyzed enantioselective conjugate addition of triethylaluminum to 2-cyclopentenone  |  Su, L., Li, X., Chan, W. L., Jia, X., & Chan, A. S. 2003. Tetrahedron: Asymmetry. 14(13): 1865-1869.
  12. Synthesis of novel diphosphite ligands derived from d-mannitol and their application in Cu-catalyzed enantioselective conjugate addition of organozinc to enones  |  Zhao, Q. L., Wang, L. L., & Xing, A. P. 2010. Tetrahedron: Asymmetry. 21(24): 2993-2998.
  13. Chiral phosphite ligands derived from L-(+)-tartaric acid: synthesis and application in the Cu-catalyzed 1, 4-conjugate addition of organozincs to cyclic enones  |  Xing, A. P., Bai, C. B., & Wang, L. L. 2013. Tetrahedron. 69(2): 455-459.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

3-Ethylcyclopentanone, 1 g

sc-266648
1 g
$81.00