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Updated: Sep 25, 2026

A Facile and Efficient Approach for the Production of Reversible Disulfide Cross-linked Micelles
Published on: December 23, 2016
Chitobiose as CO2-responsive bridge: constructing wormlike micelles with sodium 2-(dodecanoyloxy)ethanesulfonate
Meng Mu1, Heng Liu1, Xing Zhang1
1Petroleum Engineering Technology Research Institute of Shengli Oilffeld, SINOPEC, Dongying 257067, China.
Abstract:
Stimuli-responsive wormlike micelles (WLMs) have garnered widespread attention as intelligent soft materials, but most existing CO2-switchable WLM systems are based on synthetic or petroleum-derived components that are toxic and non-biodegradable. To address the above problem, we have constructed a fully bio-based, ultra-low-toxicity CO2-responsive pseudo-Gemini WLM system using sodium 2-(dodecanoyloxy)ethanesulfonate (SLI) and chitobiose, a renewable disaccharide derived from chitin. After CO2 sparging, the primary amine of chitobiose is protonated and electrostatically binds two SLI anions to form a pseudo-gemini structure, which increases the packing parameter, and thus drives the formation of long-entangled wormlike micelles; this has been verified by cryo-TEM and rheology. The system can switch between a low-viscosity Newtonian fluid (η0 ≈ 2.5 mPa s) and a highly viscoelastic fluid (η0 ≈ 8500 mPa s) reversibly multiple times, with a ∼3400-fold amplitude, and has good cycling stability. The system also has an import of 78% ± 5% biodegradation in 21 days (OECD 301B) and is very gentle on the skin; it significantly outperforms traditional SDS/TMPDA. The green route can provide a good platform for CO2-switchable soft materials and will have all sorts of applications in biomedicine, food additives and personal care products.
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