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Sodium Ligninsulfonate (CAS 8061-51-6)

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Alternate Names:
Ligninsulfonic Acid Sodium Salt; Sodium lignin sulfonate
Application:
Sodium Ligninsulfonate is an organic polymer used in various industries for its structural qualities
CAS Number:
8061-51-6
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 Ligninsulfonate is among a class of complex organic polymers. Sodium Ligninsulfonate is used in various industries as a structural component in packaging, a de-foaming agent, and to formulate food-safe adhesives. Sodium Ligninsulfonate is a naturally occurring compound derived from wood and other plant materials. Moreover, it has proven valuable as a stabilizer for liposomes, a facilitator in nanocrystal production, and a dispersant in nanoparticle preparation.


Sodium Ligninsulfonate (CAS 8061-51-6) References

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  2. Copper(II)-coated Fe3O4 nanoparticles as an efficient enzyme mimic for colorimetric detection of hydrogen peroxide.  |  Liu, H., et al. 2019. Mikrochim Acta. 186: 518. PMID: 31289934
  3. Identification and characterization of a soil bacterium with extracellular emulsifying activity.  |  Berg, G., Seech, A. G., Lee, H., & Trevors, J. T. 1990. Journal of Environmental Science & Health Part A. 25(7): 753-764.
  4. Enhancement of toxicant release from sediment by sonication and sodium ligninsulfonate  |  Liu, D., Aoyama, I., Okamura, H., & Dutka, B. J. 1996. Environmental Toxicology and Water Quality: An International Journal. 11(3): 195-203.
  5. A novel flow battery-A lead-acid battery based on an electrolyte with soluble lead (II): V. Studies of the lead negative electrode  |  Pletcher, D., Zhou, H., Kear, G., Low, C. J., Walsh, F. C., & Wills, R. G. 2008. Journal of Power Sources. 180(1): 621-629.
  6. Carbon modification of nickel catalyst for depolymerization of oxidized lignin to aromatics  |  Wang, M., Zhang, X., Li, H., Lu, J., Liu, M., & Wang, F. 2018. Acs Catalysis. 8(2): 1614-1620.
  7. Exfoliation and modification of covalent organic frameworks by a green one-step strategy: Enhanced thermal, mechanical and flame retardant performances of biopolymer nanocomposite film  |  Mu, X., Zhan, J., Feng, X., Cai, W., Song, L., & Hu, Y. 2018. Composites Part A: Applied Science and Manufacturing. 110: 162-171.
  8. Preparation and characterization of a wetting-agglomeration-based hybrid coal dust suppressant  |  Fan, T., Zhou, G., & Wang, J. 2018. Process Safety and Environmental Protection. 113: 282-291.
  9. Nitrogen-enriched compact biochar-based electrode materials for supercapacitors with ultrahigh volumetric performance  |  Zhang, W., Zou, Y., Yu, C., & Zhong, W. 2019. Journal of Power Sources. 439: 227067.
  10. Controllable synthesis of hierarchical polysilsesquioxane surfaces: From spheres-on-sphere to bowls-on-sphere structure  |  Lu, L., Li, J., Li, H., Gao, C., Xie, H., Xiong, Y.,.. & Dong, F. 2019. Applied Surface Science. 481: 75-82.
  11. Enhanced performance of the chitosan proton exchange membrane via anatase titania anchored go and sodium ligninsulfonate constructing proton transport channels  |  Cui, F., Wang, W., Shan, B., Liu, C., Xie, C., Zhu, L.,.. & Li, N. 2020. Energy & Fuels. 34(3): 3867-3876.
  12. Development and performance characterization of a hybrid dust suppressant based on sodium ligninsulfonate modification  |  Bao, Q., Liu, Y., Li, C., Jia, L., Yan, J., Yuan, M., & Zhou, W. 2021. Starch‐Stärke. 73(3-4: 2000207.
  13. Preparation of sodium ligninsulfonate functionalized MXene using hexachlorocyclotriphosphazene as linkage and its adsorption applications  |  Luo, R., Zhang, W., Hu, X., Liang, Y., Fu, J., Liu, M.,.. & Wei, Y. 2022. Applied Surface Science. 602: 154197.

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

Sodium Ligninsulfonate, 25 g

sc-487395
25 g
$52.00

Sodium Ligninsulfonate, 500 g

sc-487395A
500 g
$165.00