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February 13, 2026Nature Communications2 citationsOpen Access

Enabling water-based high-density nanoparticles assembly by using silk fibroin as an adsorbate

TKTaehoon KimCKChungman KimNGNarendar Gogurla

Key Points

  • The central aim is to explore the use of silk fibroin as an adsorbate to facilitate water-based nanoparticle assembly.
  • Utilized silk fibroin to adsorb onto nanoparticles.
  • Investigated interactions between silk fibroin and hydrophobic substrates.
  • Evaluated the fabrication of high-density nanoparticle layers using only water.
  • Silk fibroin successfully adsorbed onto various nanoparticles.
  • Enhanced intermolecular interactions led to effective wetting of hydrophobic surfaces.
  • Demonstrated NP electronics showed performance comparable to traditional methods.

Abstract

Water-based fabrication holds promise for innovations in life sciences, electronics, and materials science at the biotic-abiotic interface by integrating living systems with high technologies. However, using water to create bio-nano interfaces is challenging, as it often requires surface pre-treatment and thermal processing, which are both harmful to living systems. Here, we propose silk fibroin (SF) as a natural adsorbate that enables the fabrication of high-density nanoparticle (NP) layers relying solely on water-based processing. We show that SF spontaneously adsorbs onto various NPs, enhancing intermolecular interactions and facilitating the wetting of otherwise hydrophobic substrates, resulting in densely packed NP layers. Several SF-adsorbed NP electronics are demonstrated with performance comparable to their conventional counterparts. This work offers significant utility by establishing a flexible and biocompatible approach for the fabrication of seamless, precisely controlled bio-nano interfaces.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/698ebedd85a1ff6a930162dehttps://doi.org/10.1038/s41467-026-68499-w
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