Date published: 2026-2-7

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Sodium 4-vinylbenzenesulfonate (CAS 2695-37-6)

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Alternate Names:
4-Vinylbenzenesulfonic acid sodium salt; Styrene-4-sulfonic acid sodium salt
CAS Number:
2695-37-6
Purity:
≥90%
Molecular Weight:
206.19
Molecular Formula:
C8H7NaO3S
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

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Sodium 4-vinylbenzenesulfonate is an organic compound that readily dissolves in water and finds applications in scientific research. Its versatility as a reagent in laboratory experiments allows it to form complexes with metal ions. This compound plays a role in synthesizing various substances, including polymers and dyes. Furthermore, it is employed in the study of biochemical and physiological processes.


Sodium 4-vinylbenzenesulfonate (CAS 2695-37-6) References

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  2. Monodisperse raspberry-like multihollow polymer/Ag nanocomposite microspheres for rapid catalytic degradation of methylene blue.  |  Tian, Q., et al. 2017. J Colloid Interface Sci. 491: 294-304. PMID: 28049054
  3. Sulfonate Groups and Saccharides as Essential Structural Elements in Heparin-Mimicking Polymers Used as Surface Modifiers: Optimization of Relative Contents for Antithrombogenic Properties.  |  Chen, X., et al. 2018. ACS Appl Mater Interfaces. 10: 1440-1449. PMID: 29231707
  4. A facile method to prepare a versatile surface coating with fibrinolytic activity, vascular cell selectivity and antibacterial properties.  |  Jin, S., et al. 2018. Colloids Surf B Biointerfaces. 167: 28-35. PMID: 29625420
  5. Reshaping of triangular silver nanoplates by a non-halide etchant and its application in melamine sensing.  |  Ardianrama, AD., et al. 2019. J Colloid Interface Sci. 552: 485-493. PMID: 31152964
  6. Preparation and properties of amphiphilic hydrophobically associative polymer/ montmorillonite nanocomposites.  |  Bai, C., et al. 2020. R Soc Open Sci. 7: 200199. PMID: 32537221
  7. Vascular cell responses to silicone surfaces grafted with heparin-like polymers: surface chemical composition vs. topographic patterning.  |  Sun, W., et al. 2020. J Mater Chem B.. PMID: 32945818
  8. Reversibly Transforming a Highly Swollen Polyelectrolyte Hydrogel to an Extremely Tough One and its Application as a Tubular Grasper.  |  Yu, HC., et al. 2020. Adv Mater. 32: e2005171. PMID: 33150633
  9. Relativity as a Synthesis Design Principle: A Comparative Study of [3 + 2] Cycloaddition of Technetium(VII) and Rhenium(VII) Trioxo Complexes with Olefins.  |  Braband, H., et al. 2021. Inorg Chem. 60: 11090-11097. PMID: 34255507
  10. Magnetic methacrylated gelatin-g-polyelectrolyte for methylene blue sorption.  |  Ruiz, C., et al. 2020. RSC Adv. 10: 43799-43810. PMID: 35519716
  11. Graphene Oxide as a Radical Initiator: Free Radical and Controlled Radical Polymerization of Sodium 4-Vinylbenzenesulfonate with Graphene Oxide.  |  Voylov, D., et al. 2016. ACS Macro Lett. 5: 199-202. PMID: 35614700
  12. Cellulose Nanocrystals with Tethered Polymer Chains: Chemically Patchy versus Uniform Decoration.  |  Zoppe, JO., et al. 2017. ACS Macro Lett. 6: 892-897. PMID: 35650886
  13. Poly(ethylene glycol)-block-poly(sodium 4-styrenesulfonate) Copolymers as Efficient Zika Virus Inhibitors: In Vitro Studies.  |  Botwina, P., et al. 2023. ACS Omega. 8: 6875-6883. PMID: 36844524
  14. Effect of Surfactant Selectivity on Shape and Inner Morphology of Triblock Terpolymer Microparticles.  |  Trömer, M., et al. 2023. Macromol Rapid Commun. e2300123. PMID: 37074984
  15. Preparation and characterization of chemically cross-linked zwitterionic copolymer hydrogel for direct dye and toxic trace metal removal from aqueous medium.  |  Koryam, AA., et al. 2023. Environ Sci Pollut Res Int. 30: 72916-72928. PMID: 37184796

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Sodium 4-vinylbenzenesulfonate, 100 g

sc-236891
100 g
$77.00