Date published: 2025-11-10

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2,3-Dichlorobutane (CAS 7581-97-7)

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CAS Number:
7581-97-7
Molecular Weight:
127.01
Molecular Formula:
C4H8Cl2
Supplemental Information:
This is classified 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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2,3-Dichlorobutane, a lipophilic compound, demonstrates solubility in fats and oils. Its application extends to the investigation of the environmental impact of chlorinated hydrocarbons. Moreover, it has been utilized in the examination of the biodegradation processes of chlorinated hydrocarbons within soil and water systems.


2,3-Dichlorobutane (CAS 7581-97-7) References

  1. Evaluation of 10 aliphatic halogenated hydrocarbons in the mouse bone marrow micronucleus test.  |  Crebelli, R., et al. 1999. Mutagenesis. 14: 207-15. PMID: 10229923
  2. Effects of chlorinated aliphatic hydrocarbons on the fidelity of cell division in human CYP2E1 expressing cells.  |  Kim, A., et al. 2002. Exp Mol Med. 34: 83-9. PMID: 11989983
  3. Relevance of enantiomeric separations in environmental science.  |  Armstrong, DW., et al. 1993. Environ Pollut. 79: 51-8. PMID: 15091913
  4. Room-temperature chromium(II)-catalyzed direct arylation of pyridines, aryl oxazolines, and imines using arylmagnesium reagents.  |  Kuzmina, OM. and Knochel, P. 2014. Org Lett. 16: 5208-11. PMID: 25230000
  5. Iron-Catalyzed Directed C(sp(2))-H and C(sp(3))-H Functionalization with Trimethylaluminum.  |  Shang, R., et al. 2015. J Am Chem Soc. 137: 7660-3. PMID: 26061014
  6. Iron-Catalyzed ortho C-H Arylation and Methylation of Pivalophenone N-H Imines.  |  Xu, W. and Yoshikai, N. 2019. ChemSusChem. 12: 3049-3053. PMID: 30786170
  7. Modular Arene Difunctionalization of Unactivated C-O and C-H Bonds by Sequential Chromium-Catalyzed Transformations.  |  Rong, Z., et al. 2019. Org Lett. 21: 6869-6873. PMID: 31453706
  8. An investigation into the activation and deactivation of chlorinated hydrocarbons to genotoxins in metabolically competent human cells.  |  Doherty, AT., et al. 1996. Mutagenesis. 11: 247-74. PMID: 8671747
  9. The detection and evaluation of aneugenic chemicals.  |  Parry, JM., et al. 1996. Mutat Res. 353: 11-46. PMID: 8692188
  10. In vitro mutagenicity and genotoxicity study of a number of short-chain chlorinated hydrocarbons using the micronucleus test and the alkaline single cell gel electrophoresis technique (Comet assay) in human lymphocytes: a structure-activity relationship (QSAR) analysis of the genotoxic and cytotoxic potential.  |  Tafazoli, M., et al. 1998. Mutagenesis. 13: 115-26. PMID: 9568582
  11. Use of gas chromatography to study the thermodynamic parameters of solutions of isomers of 2,5-dimethoxytetrahydrofuran and 2,3-dichlorobutane  |  Shcherbina, T. M., Bondarev, V. B., & Vitt, S. V. 1970. Bulletin of the Academy of Sciences of the USSR, Division of chemical science volume. 19: 907–908.
  12. Discrimination of stereochemical configurations of 2, 4-dichloropentane, 2, 3-dichlorobutane, and poly (vinyl chloride) by carbon-13 nuclear magnetic resonance  |  Carman, C. J., Tarpley Jr, A. R., & Goldstein, J. H. 1971. Journal of the American Chemical Society. 93(12): 2864-2868.
  13. Stereochemical effects in free-radical hydrogen abstraction from 2,3-dichlorobutane  |  Nigel J. Bunce, Henry K. Y. Cheung, and Jo Anne Langshaw. 1986. J. Org. Chem. 51(26): 5421–5423.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

2,3-Dichlorobutane, 1 g

sc-505902
1 g
$275.00