Nonionic Pyrene-Based Amphiphiles Forming Wormlike Micelles: Synthesis and Characterization

Abstract Wormlike micelles are elongated, flexible supramolecular assemblies whose dynamic structure and anisotropic morphology have attracted considerable interest as functional soft materials. The self-assembly of amphiphilic molecules into anisotropic supramolecular nanostructures is governed by a delicate balance between hydrophobic, hydrophilic, and directional noncovalent interactions. Here, we report the synthesis and self-assembly behavior of a series of nonionic pyrene-based amphiphiles bearing oligo(ethylene glycol) headgroups. The aromatic cores promote directional self-assembly through π–π interactions, while systematic variation of the linker length was employed to elucidate its influence on aggregate morphology in aqueous media. Fluorescence spectroscopy demonstrated that these amphiphiles exhibit a strong tendency to aggregate in water, while NMR spectroscopy confirmed their highly aggregated state. Rather than exhibiting a well-defined critical micelle concentration, the compounds revealed a multistep aggregation process. Cryogenic transmission electron microscopy (cryo-TEM) showed that structural modifications direct the formation of either spherical or wormlike micelles, highlighting the role of the linker length and hydrophilic content in governing aggregate morphology. Differential scanning calorimetry and temperature-dependent cryo-TEM analysis revealed thermally induced reorganization of the assemblies, with wormlike micelles evolving into larger aggregates prior to macroscopic phase separation. These results establish structure–property relationships for a new class of pyrene-based nonionic amphiphiles and demonstrate that subtle molecular modifications provide an effective strategy for controlling wormlike micelle formation and thermally induced structural reorganization in water.

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Publication Details

Journal
Langmuir
Published
2026-10-08
DOI
https://doi.org/10.1021/acs.langmuir.6c05434
Primary Topic
Surfactants and Colloidal Systems
Type
article
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article

Nonionic Pyrene-Based Amphiphiles Forming Wormlike Micelles: Synthesis and Characterization

Katarina Marušić, Anamarija Knežević, Gaël De Leener, Marc C. A. Stuart et al.
Langmuir
Surfactants and Colloidal Systems
article

Nonionic Pyrene-Based Amphiphiles Forming Wormlike Micelles: Synthesis and Characterization

Katarina Marušić, Anamarija Knežević, Gaël De Leener, Marc C. A. Stuart, Kristin Bartik, Emina Debogović
article en

Abstract

Abstract Wormlike micelles are elongated, flexible supramolecular assemblies whose dynamic structure and anisotropic morphology have attracted considerable interest as functional soft materials. The self-assembly of amphiphilic molecules into anisotropic supramolecular nanostructures is governed by a delicate balance between hydrophobic, hydrophilic, and directional noncovalent interactions. Here, we report the synthesis and self-assembly behavior of a series of nonionic pyrene-based amphiphiles bearing oligo(ethylene glycol) headgroups. The aromatic cores promote directional self-assembly through π–π interactions, while systematic variation of the linker length was employed to elucidate its influence on aggregate morphology in aqueous media. Fluorescence spectroscopy demonstrated that these amphiphiles exhibit a strong tendency to aggregate in water, while NMR spectroscopy confirmed their highly aggregated state. Rather than exhibiting a well-defined critical micelle concentration, the compounds revealed a multistep aggregation process. Cryogenic transmission electron microscopy (cryo-TEM) showed that structural modifications direct the formation of either spherical or wormlike micelles, highlighting the role of the linker length and hydrophilic content in governing aggregate morphology. Differential scanning calorimetry and temperature-dependent cryo-TEM analysis revealed thermally induced reorganization of the assemblies, with wormlike micelles evolving into larger aggregates prior to macroscopic phase separation. These results establish structure–property relationships for a new class of pyrene-based nonionic amphiphiles and demonstrate that subtle molecular modifications provide an effective strategy for controlling wormlike micelle formation and thermally induced structural reorganization in water.

Langmuir
Université Libre de Bruxelles (BE), University of Groningen (NL), Ruđer Bošković Institute (HR)
Openalex Percentile: Top 25%
Surfactants and Colloidal Systems
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