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◆ ACS applied materials & interfaces2026-09-04

Tunable Sugar-Solanesol Block Copolymer Wormlike Micelles for Pickering-like Emulsions.

Weeranuch Lang, Sho Fukushima, Minami Ebe, Yurika Fujiwara, Binti Hashim Hamidah, Takayuki Nonoyama, Redouane Borsali, Kenji Takahashi, Feng Li, Takuya Yamamoto, Kenji Tajima, Toshifumi Satoh, Takuya Isono

原始摘要(英文原文)· Original abstract
A general design framework for fully bio-based block copolymers that integrates structural organization with macroscopic function remains largely unexplored, despite extensive study of amphiphilic systems. Herein, we address this challenge by designing fully bio-based diblock copolymers (i.e., Glc6/7-b-Sol) comprising hydrophilic maltooligosaccharide blocks predominantly composed of maltohexaose/maltoheptaose (Glc6/7) units and hydrophobic, plant-derived solanesol blocks. These copolymers form amphiphilic assemblies that integrate concentration-dependent viscoelasticity, mechanical responsiveness, and oil-water interfacial stabilization. The copolymer self-assembles into ultra-high-aspect-ratio (≈1200) wormlike micelles in water, each with a solanesyl core and sugar corona. Small-angle X-ray scattering experiments revealed significant inter-worm correlations at high concentrations, whereas the micellar cross-sectional diameter remained unchanged. Rheological measurements revealed strong concentration-dependent viscoelasticity at 40 g L-1, with a solution-to-gel-like transition affording elastic-dominated behavior, pronounced shear thinning, and full thixotropic recovery following repeated deformation at 1000% strain. The wormlike micelle rapidly fragmented into shorter segments when probe-sonicated, followed by partial reassembly of its length. The mechanically fragmented assemblies formed via sonication in the presence of oil were found to stabilize n-dodecane-in-water Pickering-like emulsions. The optimal 10 vol % n-dodecane-containing formulation afforded oil droplets with a mean diameter of 213 ± 10 nm that showed long-term stability for over 17 d. These findings establish mechanically reversible, fully bio-based wormlike micelles with tunable viscoelasticities as sustainable, surfactant-free platform materials for food, pharmaceutical, and material formulations.
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Tunable Sugar-Solanesol Block Copolymer Wormlike Micelles for Pickering-like Emulsions. — 科研速览 Science Skim