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Research Highlights in 2026

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  • An article in Advanced Materials reports a fabrication strategy that yields poly(vinyl alcohol) hydrogels with a record high isotropic toughness of 424 MJ m−3 alongside exceptional strength and extensibility.

    • Giulia Pacchioni
    Research Highlight
  • An article in Nature Materials introduces a polymerization strategy that transforms a single monomer, tetramethylene urethane, into a family of polyurethanes with diverse properties, all of which can be chemically recycled back to the same monomer.

    • Giulia Pacchioni
    Research Highlight
  • An article in Nature Communications presents a scalable one-step process that turns compositionally mixed automotive aluminium scrap into high-strength, high-ductility sheet.

    • Charlotte Allard
    Research Highlight
  • An article in Nature Communications reports high-performance intrinsically stretchable n-type transistors based on MoS2 flakes, achieving mobilities up to 12.5 cm2 V1 s1 and on/off ratios above 10⁷ under 20% strain.

    • Giulia Pacchioni
    Research Highlight
  • An article in Nature Electronics describes a method for wrapping electronics smoothly onto complex 3D surfaces.

    • Charlotte Allard
    Research Highlight
  • An article in Nature Communications reports a synthesis that can grow out-of-plane conductive 2D covalent organic framework films directly on substrates, thanks to an induced Marangoni effect.

    • Ariane Vartanian
    Research Highlight

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