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◆ International journal of biological macromolecules2026-09-18

Hydroxypropyl-phenyltriazole-functionalized chitosan as an adaptive amphiphilic emulsifier: Interfacial stabilization, rheology, and antioxidant activity.

Soohyun Kim, Nazrul Hsan, Young Je Seong, Md Morshedur Rahman, Ingi Hong, Santosh Kumar, Youngdae Kim, Shruti Mishra, Rafat Saba, Srasti Yadav, Joonseok Koh

原始摘要(英文原文)· Original abstract
Chitosan (CS) is an attractive bio-based macromolecule for emulsion stabilization, but its strong hydrophilicity, pH-dependent solubility, and limited oil-water interfacial affinity restrict its performance as a robust polymeric emulsifier. Herein, hydroxypropyl-phenyltriazole-functionalized chitosan (CS-HP-PhTrz) was synthesized via CuAAC click chemistry as an amphiphilic CS derivative with improved interfacial adaptability and antioxidant functionality. Successful functionalization was supported by FTIR, UV-Vis, 1H NMR, XRD, TGA, SEM-EDX, and XPS analyses, with an estimated degree of substitution of 13.6% based on 1H NMR integration of the triazole Hₐ and chitosan H-2 proton signals and no detectable Cu 2p signal in the XPS survey spectrum after purification. Compared with native CS, CS-HP-PhTrz exhibited higher initial hydrophobicity, rapid hydration-induced wettability transition, and retained positive surface charge, indicating dynamically amphiphilic behavior favorable for oil-water interfacial stabilization. Response surface methodology was used to evaluate the effects of emulsifier concentration, oil fraction, and pH on creaming behavior. Native CS showed a restricted formulation window and failed under selected high-oil/high-emulsifier conditions, whereas CS-HP-PhTrz maintained emulsion-forming ability over a broader region and produced near-zero creaming under selected conditions. Rheological analysis revealed elastic-dominant, shear-thinning emulsions, with CS-HP-PhTrz forming a softer and more flowable viscoelastic network than native CS. CS-HP-PhTrz also showed enhanced ABTS radical-scavenging activity, reaching 48.46 ± 1.63%. DFT/COSMO analyses revealed spatially separated polar and hydrophobic domains. A preliminary A549-cell MTT assessment was also conducted, but vehicle-associated effects limited material-specific cytotoxicity interpretation. These results indicate that phenyltriazole functionalization converts chitosan into a multifunctional biomacromolecular emulsifier for sustainable emulsion systems.
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Hydroxypropyl-phenyltriazole-functionalized chitosan as an adaptive amphiphilic emulsifier: Interfacial stabilization, rheology, and antioxidant activity. — 科研速览 Science Skim