Lithium-p-styrenesulfonate丨CAS 4551-88-6

Lithium-p-styrenesulfonate丨CAS 4551-88-6
Product Introduction:
Catalog No.: SS137576
CAS No.: 4551-88-6
SSL Purity(as purity of SSL, by dry basis): 88% min
Product Name: Lithium-p-styrenesulfonate
Molecular Formula: C8H9LiO3S
Molecular Weight: 192.16
Synonym(s): Lithium 4-ethenylbenzene-1-sulfonate
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Technical Parameters
Description

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Specifications

 

Appearance White powder
SSL Purity (as purity of SSL, by dry basis) 88% min
Water 8% max
Lithium Sulfate 1.0% max
Sodium Bromide 2.0% max
Lithium Hydroxide 1.0% max

 

 

 

Applications

 

Lithium-p-styrenesulfonate is a functional monomer and polyelectrolyte precursor widely used in polymer chemistry, materials science, and electrochemical applications. It serves as a key building block in the synthesis of conductive polymers, ion-exchange resins, and polyelectrolyte membranes. In battery technology, particularly lithium-ion and polymer electrolyte systems, it is used to improve ionic conductivity and electrochemical stability. The compound is also employed in surface modification, water treatment, and the preparation of sulfonated polymer networks, where the styrenesulfonate group introduces both rigidity and ionic functionality. Additionally, it is utilized in academic and industrial research to develop advanced polymeric materials with tunable mechanical, thermal, and ionic properties.

 

Benefits

 

Lithium-p-styrenesulfonate offers several advantages due to its ionic functionality, chemical stability, and versatility in polymerization reactions. The sulfonate group provides high ionic conductivity and facilitates interactions with cationic species, making it particularly useful in electrolytes and ion-exchange applications. The styrene moiety allows incorporation into copolymers via radical polymerization, enabling the design of tailored polymer structures. The lithium counterion enhances solubility in polar solvents and contributes to improved electrochemical performance in battery and membrane applications. Additionally, the compound is thermally stable and compatible with a wide range of polymer matrices, providing consistent and reproducible results in material development.

 

Conclusion

 

Lithium-p-styrenesulfonate is a versatile monomer and functional reagent with broad applications in polymer chemistry, electrochemical systems, and material science. Its benefits, including ionic conductivity, polymerizability, chemical stability, and compatibility, make it an essential building block for advanced functional polymers, ion-exchange membranes, and battery electrolytes. The continued use of this compound supports innovation in energy storage, water treatment, and high-performance polymeric materials.

 

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