Date published: 2026-5-14

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Triclosan-d3 (CAS 1020719-98-5)

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Alternate Names:
2′-Hydroxy-2,4,4′-trichlorodiphenyl-d3 Ether
Application:
Triclosan-d3 is an antiseptic and disinfectant
CAS Number:
1020719-98-5
Molecular Weight:
292.56
Molecular Formula:
C12H4D3Cl3O2
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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Isotope-labelled Triclosan is utilized as a bactericide and preservative in cosmetic and detergent formulations. With widespread use as an antiseptic and disinfectant, Triclosan-d3 has undergone extensive scientific research and has demonstrated efficacy against a broad spectrum of bacteria, fungi, and viruses. It has been employed in laboratory experiments to evaluate the effectiveness of various antimicrobial agents.


Triclosan-d3 (CAS 1020719-98-5) References

  1. A high-precision sampling scheme to assess persistence and transport characteristics of micropollutants in rivers.  |  Schwientek, M., et al. 2016. Sci Total Environ. 540: 444-54. PMID: 26283620
  2. Triclosan removal in wetlands constructed with different aquatic plants.  |  Liu, J., et al. 2016. Appl Microbiol Biotechnol. 100: 1459-1467. PMID: 26490552
  3. Removal mechanisms and plant species selection by bioaccumulative factors in surface flow constructed wetlands (CWs): In the case of triclosan.  |  Zhao, C., et al. 2016. Sci Total Environ. 547: 9-16. PMID: 26780127
  4. Laccase- and electrochemically mediated conversion of triclosan: Metabolite formation and influence on antibacterial activity.  |  Jahangiri, E., et al. 2017. Chemosphere. 168: 549-558. PMID: 27842719
  5. Pharmaceutical chemicals, steroids and xenoestrogens in water, sediments and fish from the tidal freshwater Potomac River (Virginia, USA).  |  Arya, G., et al. 2017. J Environ Sci Health A Tox Hazard Subst Environ Eng. 52: 686-696. PMID: 28448746
  6. Ecotoxicological evaluation of the risk posed by bisphenol A, triclosan, and 4-nonylphenol in coastal waters using early life stages of marine organisms (Isochrysis galbana, Mytilus galloprovincialis, Paracentrotus lividus, and Acartia clausi).  |  Tato, T., et al. 2018. Environ Pollut. 232: 173-182. PMID: 28951039
  7. Effects of water warming and acidification on bioconcentration, metabolization and depuration of pharmaceuticals and endocrine disrupting compounds in marine mussels (Mytilus galloprovincialis).  |  Serra-Compte, A., et al. 2018. Environ Pollut. 236: 824-834. PMID: 29462777
  8. Micropollutants removal by full-scale UV-C/sulfate radical based Advanced Oxidation Processes.  |  Rodríguez-Chueca, J., et al. 2018. Sci Total Environ. 630: 1216-1225. PMID: 29554743
  9. Removal of contaminants of emerging concern from urban wastewater in novel algal-bacterial photobioreactors.  |  López-Serna, R., et al. 2019. Sci Total Environ. 662: 32-40. PMID: 30684900
  10. Mechanisms of pharmaceutical and personal care product removal in algae-based wastewater treatment systems.  |  Larsen, C., et al. 2019. Sci Total Environ. 695: 133772. PMID: 31425979
  11. Metabolic changes during respiratory syncytial virus infection of epithelial cells.  |  Martín-Vicente, M., et al. 2020. PLoS One. 15: e0230844. PMID: 32214395
  12. An Improved Synthesis of Glucuronide Metabolites of Hindered Phenolic Xenoestrogens.  |  Sancéau, JY., et al. 2022. Curr Org Synth. 19: 838-845. PMID: 35473530
  13. A Novel Analytical Approach to Assessing Sorption of Trace Organic Compounds into Micro- and Nanoplastic Particles.  |  Reichel, J., et al. 2022. Biomolecules. 12: PMID: 35883509
  14. MCDA-DEA approach to construct a composite indicator for effluents from WWTPs considering the influence of PPCPs.  |  Bellver-Domingo, Á., et al. 2023. Environ Sci Pollut Res Int.. PMID: 36735130

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Triclosan-d3, 1 mg

sc-220328
1 mg
$350.00