Skip to content
Open access

Redox‐Confined Interfacial Polymerization Enables Mechanically Robust and Self‐Adhesive Nanofilms

Aug 2026 · Advanced Materials Interfaces · Vol 13 · 0 citations · 35 references

Abstract

Robust polymer nanofilms are increasingly important for applications that require mechanically strong yet compliant membranes with nanoscale thickness and intimate interfacial contact. While biological membranes naturally combine flexibility, adaptability, and adhesion, achieving these features in synthetic nanomembranes remains challenging. Here, we report a one‐step strategy for the synthesis of centimeter‐scale, freestanding nanofilms via redox‐confined interfacial polymerization at a liquid‐liquid interface. Oxidative coupling of a multifunctional thiol monomer is spatially restricted to the aqueous‐organic interface, yielding continuous membranes with precisely tunable thicknesses ranging from tens to hundreds of nanometers. Structural and surface analyses reveal uniform network formation across all film thicknesses, consistent with a diffusion‐controlled growth mechanism. The resulting nanofilms exhibit high Young's modulus (425 MPa) and tensile strength (38 MPa), solid‐like viscoelastic behavior, and intrinsic adhesion to artificial skin despite the absence of dedicated bioadhesive functionalization. Together, these results establish redox‐confined interfacial polymerization as a versatile fabrication route to mechanically robust, freestanding nanomembranes with potential relevance for wearable sensing platforms, therapeutic interfaces, separation membranes, and other applications requiring strong ultrathin films with intrinsic adhesion.

Read PDF

Similar papers

Aug 2026

In Situ Grown Hydrogel Coatings With Robust Interfaces for Skinned Soft Devices

Robust hydrogel‐elastomer integration is crucial for soft electronics and robotics but hindered by interfacial fragility. Here, we present a spatially confined in situ photopolymerization strategy to grow hydrogel coatings directly from polydimethylsiloxane (PDMS). By confining the active radicals within the solvent‐...

Yangdong Huang, Hang Jin, Zhengmao Ding et al. · 1 citation
Open access Aug 2026

Preferential Interfacial Engineering of Hydrogels via Interdigitated Nanoparticle Assembly

Hydrogels have emerged as promising materials across various fields, including biomedical, electronic, and robotic applications, due to their intrinsic softness and biocompatibility. Despite these advantages, the development of hydrogel‐based functional materials and devices remains limited by the narrow range of mat...

Hyeonjin Kim, Hyeseoung Lim, Ji Min Lee et al. · 0 citations
Aug 2026

Interfacial Confined Mutual Catalysis (ICMC) Method: A Modular Platform for Scalable Manufacturing of Multifunctional Hydrogel Coatings

The fabrication of biohydrogel coatings faces a trilemma in balancing gelation speed, functional fidelity, and scalability. Rapid reactions often lead to heterogeneous networks due to kinetic trapping, whereas precise methods tend to be slow and difficult to scale. To address this challenge, we propose an Interfacial c...

Peng Wang, Yun-Song Kong, Wei-Yi Zhao et al. · 0 citations
Sep 2026

Electrostimulus Phase-Transition Mediated Robust Adhesive Hydrogels.

Adhesive hydrogels are crucial for interfacing wearable electronics with substrates, yet the inherent trade-off between interfacial adhesion and cohesive strength always limits their application performance. Here, we present an adhesive hydrogel based on lignin-mediated catechol chemistry and salt hydrate phase-transit...

Jin-Lai Shen, Min-Kun Cai, Xiong Yi et al. · 0 citations
Sep 2026

Biomimetic Nacre‐Inspired Nanofluidic Membranes with Concurrently Enhanced Ionic Conductivity and Mechanical Robustness

Two‐dimensional nanofluidic membranes are emerging as attractive functional materials for osmotic energy conversion, yet their practical implementation is hindered by the intrinsic trade‐off between ionic conductivity and mechanical robustness. Here, inspired by the hierarchical brick‐and‐mortar architecture of nac...

Ruo-Han Feng, Haoyue Zhang, Cuiping Guo et al. · 0 citations
Review Sep 2026

Dispersion and functionalization as interfacial drivers in next-generation rubber composites.

Elastomers are indispensable across applications ranging from tires to soft robotics, prized for their elasticity, resilience, and durability. Despite this central role, progress in elastomer composites has been guided largely by empirical compounding, with insufficient emphasis on the interfacial energetics that gover...

Su-Bin Kim, Na Chu, Seulbee Lee et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.