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February 22, 2026Polymer Engineering and Science1 citationsOpen Access

Enhanced Water Absorption and Tunable Swelling Behavior in Chemically Crosslinked Isinglass/Agar Hydrogel Beads

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ALAlireza LotfiMMMahshid MaroufkhaniBPBehzad Pourabbas

Key Points

  • The aim is to investigate the water absorption and swelling behavior of chemically crosslinked isinglass/agar hydrogel beads.
  • Synthesis of hydrogel beads using a self-assembly method at a water-in-oil emulsion interface.
  • Chemical crosslinking with glutaraldehyde forming stable aldimine bonds.
  • Characterization of the hydrogel morphology with field emission scanning electron microscopy (FE-SEM).
  • Determination of swelling kinetics in relation to pH and temperature.
  • Fourier-transform infrared spectroscopy (FTIR) to analyze chemical crosslinks.
  • Hydrogel beads exhibited a size distribution between 3.5 and 3.75 mm, confirming synthesis reproducibility.
  • Equilibrium swelling ratio decreased from 1358% to 753% as crosslinker concentration increased.
  • Maximum swelling ratio observed at pH 3 (~1580%), decreasing with higher pH.
  • Swelling ratio increased with temperature, reaching approximately 1960% at 60°C.
  • Swelling behavior aligned with the pseudo-second-order model, indicating strong polymer-water interactions.

Abstract

ABSTRACT Isinglass/agar hydrogel beads were synthesized using a self‐assembly method at a water‐in‐oil emulsion interface. The hydrogel was chemically crosslinked using glutaraldehyde to generate stable aldimine bonds with amino (–NH 2 ) groups present in isinglass. Fourier‐transform infrared spectroscopy (FTIR) was utilized to determine the generation of chemical crosslinks within the hydrogel. The hydrogel's porous and interconnected three‐dimensional morphology was investigated with field emission scanning electron microscopy (FE‐SEM). The resulting hydrogel beads demonstrated a narrow and uniform size distribution ranging from 3.5 to 3.75 mm, confirming the reproducibility of the synthesis method. The equilibrium swelling ratio was reduced as the crosslinking agent concentration increased, resulting in water uptake decreasing from about 1358% to 753%. Also, the swelling ratio was very sensitive to pH changes, showing a maximum (~1580%) at pH 3 and decreasing as pH increased. The swelling ratio increased with the temperature, reaching approximately 1960% at 60°C. Analysis of the swelling kinetics showed that the swelling behavior was in good agreement with the pseudo‐second‐order model, implying the presence of chemical interactions between the polymeric chains and the molecules of water. These findings suggest that these hydrogels could be suitable for wastewater treatment, contaminant removal, or controlled release.

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Cite This Study

Lotfi et al. (2026) studied this question.

synapsesocial.com/papers/699a9d3c482488d673cd2f98https://doi.org/10.1002/pen.70295
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