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February 12, 20260 citationsOpen Access

Polymer Infiltration Into SURMOF Channels Enables Hydrophobic and Solid‐Like Slippery Functional Thin Films

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ABAngana BorboraMLModan LiuHGHartmut Gliemann

Key Points

  • This research aims to explore the effects of polymer-chain insertion into SURMOFs on interfacial properties.
  • Developed a polymer-chain insertion strategy for SURMOF films
  • Utilized layer-by-layer deposition to create Cu2(bdc)2(dabco) SURMOF
  • Conducted X-ray diffraction and infrared spectroscopy to analyze changes in film properties
  • Infiltrated films showed enhanced hydrophobicity and water stability
  • Characteristic changes observed in X-ray diffraction patterns
  • Long tetracontane chains enabled lubricant-free slippery behavior of films

Abstract

Designing functional thin films with precisely controlled surface chemistry and smoothness is essential for achieving targeted interfacial properties. Here, we introduce a polymer-chain insertion strategy to fabricate pore-threaded films by grafting uniformly long polymer chains into the vertical channels of surface-mounted metal-organic frameworks (SURMOFs). Using the highly oriented pillared-layer Cu2(bdc)2(dabco) SURMOF grown by layer-by-layer deposition as a crystalline host, infiltration of polymer chains into its nanochannels allows systematic tuning of interfacial chemistry and water wettability. Insertion of hydrophobic n-alkane chains effectively masks the polar framework surface, enhances water stability, and imparts strong hydrophobicity. Polymer incorporation leads to characteristic modifications in the X-ray diffraction pattern, and infrared spectroscopy reveals chain alignment through shifts in CH-stretching modes. Notably, films infiltrated with long tetracontane (C40H82) chains exhibit lubricant-free slippery behavior, enabling water droplets to slide off readily due to the combination of smooth surface morphology and the low surface energy of exposed hydrocarbon segments. This scalable approach provides an internally integrated method for tailoring SURMOF thin-film properties, expanding their applicability in liquid-repellent coatings, anti-fouling surfaces, and separation technologies.

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Cite This Study

Borbora et al. (2026) studied this question.

synapsesocial.com/papers/698d6de45be6419ac0d53357https://doi.org/10.5445/ir/1000190405
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