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January 17, 2026Gels12 citationsOpen Access

Construction of Flexible Kaolin/Chitin Composite Aerogels and Their Properties

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MHMeng Xiao HeYHYujia HuangZCZhicheng Cui

Key Points

  • The research aims to fabricate kaolin/chitin composite aerogels and assess their structural and hemostatic properties.
  • Composite aerogels were fabricated using a freeze-drying approach.
  • Different mass ratios of kaolin to chitin were tested.
  • Microstructure and properties were systematically investigated.
  • In vitro tests were conducted to evaluate hemostatic performance.
  • The aerogels showed a water absorption capacity of up to 4282%.
  • Water retention was measured at 73.7% for a specific ratio at 60 minutes.
  • Biodegradability and non-toxicity were confirmed with cell viability > 91.9%.
  • Blood coagulation time was noted at 16 seconds for the optimal composite.
  • The coagulation index was as low as 0.5%, indicating effective clot formation.

Abstract

In this work, kaolin/chitin (K/Ch) composite aerogels with different mass ratios were successfully fabricated via a freeze–drying approach. The influence of kaolin content on the microstructure, properties and hemostatic performance of the composite aerogels was systematically investigated. The results demonstrated that the incorporation of kaolin endowed the chitin-based aerogels with tunable porous structures, excellent water absorption capacity (up to 4282% for K0.25/Ch2), and enhanced water retention (73.7% for K2/Ch2 at 60 min). Moreover, the K/Ch composite aerogels exhibited good biodegradability, no cytotoxicity (cell viability > 91.9%), and no hemolysis (hemolysis rate < 1.5% at all test concentrations). In vitro hemostatic evaluations revealed that the composite aerogels exhibited rapid blood coagulation (blood clotting time of 16 s for K2/Ch2) with a blood coagulation index (BCI) as low as 0.5%, which was attributed to the synergistic effect of the physical adsorption of chitin and the coagulation cascade activation by kaolin. These findings indicated that the K/Ch composite aerogels could be used as novel natural hemostatic materials for potential effective and rapid hemostasis.

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Cite This Study

He et al. (2026) studied this question.

synapsesocial.com/papers/696b25f3d2a12237a934930fhttps://doi.org/10.3390/gels12010076
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