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Synthesis of Polyamide-Based Microcapsules via Interfacial Polymerization: Effect of Key Process Parameters
Angeliki D Mytara1, Konstantina Chronaki1, Vasilis Nikitakos1
1Laboratory of Polymer Technology, School of Chemical Engineering, Zographou Campus, National Technical University of Athens, 15780 Athens, Greece.
Researchers developed fully aliphatic polyamide microcapsules (PA MCs) for improved barrier properties. Optimizing core solvent and stirring conditions enhanced yield and morphology, though mechanical strength remains a challenge.
Area of Science:
- Materials Science
- Polymer Chemistry
Background:
- Polyamide microcapsules (PA MCs) show promise due to excellent barrier properties.
- Their application is hindered by the inherent fragility of the polyamide membrane.
Purpose of the Study:
- To prepare fully aliphatic PA MCs using ethylene diamine and sebacoyl chloride via interfacial polymerization.
- To investigate the impact of key parameters on process yield and microcapsule characteristics.
Main Methods:
- Interfacial polymerization of ethylene diamine and sebacoyl chloride.
- Systematic variation of monomers ratio, core solvent, stirring rate, and polymerization time.
- Analysis of microcapsule properties including shell molecular weight, thermal behavior, size, and morphology.
Main Results:
- Process yield is significantly influenced by the core solvent's effect on diamine diffusion.
- Spherical PA MCs (14-90 μm) with 33% yield were achieved using toluene as the core solvent.
- Milder stirring improved microcapsule morphology, but mechanical properties require further enhancement.
Conclusions:
- Toluene is an effective core solvent for producing PA MCs with good yield and morphology.
- Process optimization, particularly stirring, can refine microcapsule characteristics.
- Enhancing the mechanical robustness of these PA MCs remains a critical area for future research.
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