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Preparation and Characterizations of PSS/PDADMAC Polyelectrolyte Complex Hydrogel
Thichakorn Sungoradee1, Kawee Srikulkit2,3
1Petrochemistry and Polymer Science, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Polymers
|May 14, 2022
Summary
This study details the creation of poly (sodium 4-styrenesulfonate)/poly (diallyl dimethyl ammonium chloride) (PSS/PDADMAC) complex hydrogels. These novel hydrogels exhibit high water absorbency and affinity for textile anionic dyes, offering promising applications.
Area of Science:
- Materials Science
- Polymer Chemistry
- Biomaterials
Background:
- Polyelectrolyte complex (PEC) hydrogels offer non-toxicity and solvent-free preparation.
- Physically electrostatic crosslinks between polyanions and polycations form PEC hydrogels.
- Existing PEC hydrogels require further optimization for stability and specific applications.
Purpose of the Study:
- To synthesize and characterize poly (sodium 4-styrenesulfonate)/poly (diallyl dimethyl ammonium chloride) (PSS/PDADMAC) complex hydrogels.
- To investigate the morphology, dimensional stability, and viscoelastic properties of the prepared hydrogels.
- To evaluate the water absorbency and dye affinity of PSS/PDADMAC hydrogels.
Main Methods:
- Preparation of PSS/PDADMAC complex aggregates followed by resolubilization to form a homogeneous PEC solution.
- Dialysis of the PEC solution using a 3500 molecular cut-off membrane to control electrostatic interactions.
- Characterization using Scanning Electron Microscopy (SEM), Brunauer–Emmett–Teller (BET) analysis, and Dynamic Mechanical Analysis (DMA).
Main Results:
- Homogeneous PEC hydrogels with a porous morphology were successfully synthesized.
- SEM and BET analyses confirmed the porous structure of the hydrogels.
- DMA experiments demonstrated the viscoelastic behavior of the PSS/PDADMAC hydrogels under compression.
- The hydrogels exhibited high water absorbency and excellent affinity for textile anionic dyes.
Conclusions:
- The developed PSS/PDADMAC hydrogels possess a controllable porous structure and desirable viscoelastic properties.
- These hydrogels demonstrate significant potential for applications requiring high water absorbency and dye binding capabilities.
- The solvent-free and non-toxic nature of PEC hydrogels makes them attractive for various advanced material applications.

