Date published: 2025-12-6

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Lithium ionophore VIII (CAS 133338-85-9)

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Alternate Names:
N,N,N′,N′,N″,N″-Hexacyclohexyl-4,4′,4″-propylidynetris(3-oxabutyramide)
CAS Number:
133338-85-9
Molecular Weight:
798.19
Molecular Formula:
C48H83N3O6
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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A lipophilic, neutral ionophore for lithium ion-selective solvent polymeric membrane electrodes represents a specialized chemical entity designed to selectively bind and transport lithium ions across a membrane, playing a pivotal role in the development of sensitive, selective analytical tools for lithium detection and quantification. The incorporation of such an ionophore into solvent polymeric membrane electrodes enhances the electrodes′ specificity to lithium ions, for applications in environmental monitoring, battery technology research, and the study of lithium′s biogeochemical cycles. The lipophilic nature of the ionophore ensures compatibility with the polymer matrix of the membrane, facilitating efficient lithium ion translocation while maintaining the electrode′s structural integrity and function.


Lithium ionophore VIII (CAS 133338-85-9) References

  1. GSK3beta mediates the induced expression of synaptic acetylcholinesterase during apoptosis.  |  Jing, P., et al. 2008. J Neurochem. 104: 409-19. PMID: 17949411
  2. Ionophore-Based Titrimetric Detection of Alkali Metal Ions in Serum.  |  Zhai, J., et al. 2017. ACS Sens. 2: 606-612. PMID: 28723189
  3. Quantum chemical insight on the uranyl benzoates association with cetylpyridinium  |  O Fizer, M Fizer, V Sidey - Journal of Radioanalytical and Nuclear …, 2021 - Springer. (2021). Journal of Radioanalytical and Nuclear Chemistry. volume 329,: pages 661–670.
  4. Lithium ionophore VIII as an extraordinarily effective receptor for the barium cation  |  , et al. (2015). Monatshefte für Chemie - Chemical Monthly. volume 146:, pages 863–866.
  5. Experimental and theoretical study on complexation of Li+ with lithium ionophore VIII  |  , et al. (2013). Monatshefte für Chemie - Chemical Monthly. volume 144,: pages 1607–1611.
  6. Complexation of the cesium cation with lithium ionophore VIII: extraction and DFT study  |  E Makrlík, V Novák, P Vaňura, P Bouř - Journal of Radioanalytical and …, 2013 - Springer. 2013). Journal of Radioanalytical and Nuclear Chemistry. volume 298,: pages 2065–2068.
  7. Voltammetric Ion Sensing with Ionophore-Based Ion-Selective Electrodes Containing Internal Aqueous Solution, Improving Lifetime of Sensors  |  by Valentina Keresten, et al. 2022. Membranes,. 12(11),;: 1048.
  8. Lithium ionophore VIII as an extraordinarily strong receptor for the trivalent europium cation  |  Emanuel Makrlík, et al. 2015 - Issue 1. An International Journal at the Interface Between Chemistry and Physics. Volume 113,: Pages 89-94.
  9. Novel flow-through bulk optode for spectrophotometric determination of lithium in pharmaceuticals and saliva  |  MI Albero, JA Ortuno, MS Garcia, M Cuartero… - Sensors and Actuators B …, 2010 - Elsevier. 4 March 2010,. Sensors and Actuators B: Chemical. Volume 145, Issue 1,: Pages 133-138.
  10. Lithium ionophore VIII as an extraordinarily effective receptor for the strontium cation: Experimental and theoretical study  |  E Makrlík, V Novák, P Vaňura, P Bouř - Journal of Molecular Structure, 2014 - Elsevier. 5 March 2014,. Journal of Molecular Structure. Volume 1061,: Pages 110-113.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Lithium ionophore VIII, 50 mg

sc-252963
50 mg
$490.00