Structure–property correlations for PEG-interpenetrated hybrids of poly(acrylamide-co‑sodium acrylate) reinforced with Laponite, halloysite, sepiolite and montmorillonite
Rabia Bozbay , Mertcan Er , Kübra Kara Ersoy , Nermin Orakdogen
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引用次数: 0
Abstract
This study investigates the impact of different clay types on the properties of clay polymer nanocomposites (CPNs). semi-interpenetrated (semi-IPN) cryogels consisting of poly(acrylamide-co‑sodium acrylate)/poly(ethylene glycol) (PAN/PEG) and various clay minerals such as Laponite, sepiolite, halloysite, and montmorillonite were prepared following “in situ” synthetic protocol. The aim was to determine most effective inorganic component for developing desired elasticity and swelling/shrinking ability. By fixing the concentration of clay minerals embedded in CPNs as 1.50 % (w/v), the effect of inorganic clay type on structural properties was evaluated in terms of polymerization temperature, compressive elasticity, pH and thermo-sensitivity. Clay type had an effect on the thermal stability of semi-IPNs, while sepiolite increased the stability and compressive modulus to a higher extent. Among the four types of semi-IPNs, the water absorbency of montmorillonite-integrated gel was the highest, while that of sepiolite-doped was the lowest. The elastic moduli of semi-IPNs incorporated with same amount of clay is in the order Sepiolite > Halloysite > Laponite > Montmorillonite. Changing pH in the range of 2.1 to 11.2 significantly increased the swelling, while a small variation in pH 6.6 caused a large difference in swelling capacity. For pH-dependent cyclic swelling, the highest swelling-shrinkage response was observed in Laponite-doped cryogels. The swelling of nanocomposites was significantly weakened by the change in ionic strength, while the swelling increased with the incubation temperature, showing good agreement with Fickian diffusion. Among the nanocomposites for cationic methylene blue (MB) dye, Laponite-integrated semi-IPNs exhibited the highest adsorption capacity from aqueous solution with 89.51 mg/g. MB adsorption kinetics followed pseudo-second-order, Freundlich and Redlich–Peterson isotherm models. The findings provide strategic approach for promising material design, supporting the development of potential applications of polyelectrolyte semi-IPN nanocomposite cryogels as biomedical materials.
期刊介绍:
Applied Clay Science aims to be an international journal attracting high quality scientific papers on clays and clay minerals, including research papers, reviews, and technical notes. The journal covers typical subjects of Fundamental and Applied Clay Science such as:
• Synthesis and purification
• Structural, crystallographic and mineralogical properties of clays and clay minerals
• Thermal properties of clays and clay minerals
• Physico-chemical properties including i) surface and interface properties; ii) thermodynamic properties; iii) mechanical properties
• Interaction with water, with polar and apolar molecules
• Colloidal properties and rheology
• Adsorption, Intercalation, Ionic exchange
• Genesis and deposits of clay minerals
• Geology and geochemistry of clays
• Modification of clays and clay minerals properties by thermal and physical treatments
• Modification by chemical treatments with organic and inorganic molecules(organoclays, pillared clays)
• Modification by biological microorganisms. etc...