Polymerization-Induced Self-Stabilized High Internal Phase Emulsions via Interfacial Poly(thioacetal) Formation

Abstract A polymerization-induced self-stabilization strategy is reported for the fabrication of degradable polymer foams without external surfactants or particulate stabilizers. Specifically, interfacial polycondensation between glyoxal and 1,6-hexanedithiol generates amphiphilic oligomers in situ, which spontaneously adsorb at the oil–water interface and stabilize high internal phase emulsions (HIPEs). Subsequent curing and cross-linking afford interconnected hydrophobic foams with tunable porous structures and mechanical properties. The resulting materials exhibit efficient separation of organic solvents from water, facilitating recovery and reuse. Moreover, incorporation of glyoxylic acid as a comonomer tailors surface wettability, enabling effective adsorption of Cu2+ from aqueous solutions. Notably, the foams exhibit oxidative degradability under mild H2O2 treatment, underscoring their environmental benignity. This work establishes “polymerization-induced self-stabilization” as a new strategy for constructing surfactant-free, degradable foams templated by HIPEs with demonstrated applications in the fields of separation and adsorption.

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Publication Details

Journal
ACS Macro Letters
Published
2026-09-22
DOI
https://doi.org/10.1021/acsmacrolett.6c00374
Primary Topic
Pickering emulsions and particle stabilization
Type
article
Field-Weighted Citation Impact
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Polymerization-Induced Self-Stabilized High Internal Phase Emulsions via Interfacial Poly(thioacetal) Formation

Chengcheng Hu, Kangle Yan, Baoxia Wang, Liang Yuan et al.
ACS Macro Letters
Pickering emulsions and particle stabilization
article

Polymerization-Induced Self-Stabilized High Internal Phase Emulsions via Interfacial Poly(thioacetal) Formation

Chengcheng Hu, Kangle Yan, Baoxia Wang, Liang Yuan, Wangmao Tian, Yu Jin, Chun Li Mo, Yan Gao, Jie Xiang, Junjie Xu
article en

Abstract

Abstract A polymerization-induced self-stabilization strategy is reported for the fabrication of degradable polymer foams without external surfactants or particulate stabilizers. Specifically, interfacial polycondensation between glyoxal and 1,6-hexanedithiol generates amphiphilic oligomers in situ, which spontaneously adsorb at the oil–water interface and stabilize high internal phase emulsions (HIPEs). Subsequent curing and cross-linking afford interconnected hydrophobic foams with tunable porous structures and mechanical properties. The resulting materials exhibit efficient separation of organic solvents from water, facilitating recovery and reuse. Moreover, incorporation of glyoxylic acid as a comonomer tailors surface wettability, enabling effective adsorption of Cu2+ from aqueous solutions. Notably, the foams exhibit oxidative degradability under mild H2O2 treatment, underscoring their environmental benignity. This work establishes “polymerization-induced self-stabilization” as a new strategy for constructing surfactant-free, degradable foams templated by HIPEs with demonstrated applications in the fields of separation and adsorption.

ACS Macro Letters
Anhui Agricultural University (CN), Ningbo University of Technology (CN)
Clean water and sanitation
Openalex Percentile: Top 24%
Pickering emulsions and particle stabilization
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