Yayın:
Temperature-Regulated Synthesis of Hyaluronic Acid-Interpenetrated Polyacrylamide/Poly(Acrylic Acid Sodium Salt) Semi-Interpenetrated Polymer Network Gel for the Removal of Methyl Violet

dc.contributor.authorÖzcan, Nida
dc.contributor.authorOrakdogen, Nermin
dc.date.accessioned2026-01-25T23:39:52Z
dc.date.issued2024-08-28
dc.description.abstractAn alternative synthetic pathway was proposed for the optimization of synthesis to find a better correlation between the swelling and elasticity of hyaluronic acid-interpenetrated gels via temperature regulation. An experimental design methodology was presented for the synthesis of polyacrylamide/poly(acrylic acid sodium salt)/hyaluronic acid, PAAm/PSA/HyA, gels by modifying the one-pot procedure using free radical crosslinking copolymerization of AAm with the addition of anionic linear PSA chains in the presence of various amount of HyA, ranging between 0.05% and 0.20% (w/v). Semi-interpenetrated polymer network (IPN)-structured gels were designed with tunable elasticity, in which the extent of covalent crosslinking interactions is controlled by polymerization temperature ranging between −18 and 45 °C. Depending on the HyA content added in the synthesis and the polymerization temperature, the swelling ratio could be controlled. The addition of 0.05% (w/v) HyA increased the swelling of semi-IPNs, while the elastic modulus increased with increasing HyA content and decreased with the polymerization temperature. PAAm/PSA/HyA semi-IPNs showed the typical pH-sensitive swelling of anionic gels, and the swelling reached a maximum at a pH of 11.2. PAAm/PSA/HyA gels were tested for the removal of methyl violet from wastewater. Adsorption kinetics were shown to be well-fitted with the pseudo-second-order model using linear and nonlinear regression analysis. With the clear relationship between increased modulus and composition, this study enabled the fine-tuning of semi-IPN interactions by varying the polymerization temperature.
dc.description.urihttps://doi.org/10.3390/gels10090556
dc.description.urihttps://pubmed.ncbi.nlm.nih.gov/39330158
dc.description.urihttp://dx.doi.org/10.3390/gels10090556
dc.description.urihttps://doaj.org/article/67d1ad2c3f834a49a0a9b258454a130f
dc.identifier.doi10.3390/gels10090556
dc.identifier.eissn2310-2861
dc.identifier.openairedoi_dedup___::a3c876ee422f4356cf09fb7581be7b36
dc.identifier.orcid0009-0009-6175-9567
dc.identifier.startpage556
dc.identifier.urihttps://hdl.handle.net/11527/52930
dc.identifier.volume10
dc.language.isoeng
dc.publisherMDPI AG
dc.relation.ispartofGels
dc.rightsOPEN
dc.subjectScience
dc.subjectGeneral. Including alchemy
dc.subjectArticle
dc.subjectswelling
dc.subjectChemistry
dc.subjectQD1-65
dc.subjecthyaluronic acid
dc.subjectelasticity
dc.subjectsemi-IPN
dc.subjectQD1-999
dc.subjectInorganic chemistry
dc.subjectQD146-197
dc.titleTemperature-Regulated Synthesis of Hyaluronic Acid-Interpenetrated Polyacrylamide/Poly(Acrylic Acid Sodium Salt) Semi-Interpenetrated Polymer Network Gel for the Removal of Methyl Violet
dc.typeArticle
dspace.entity.typePublication

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