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March 25, 2026Nature Communications2 citationsOpen Access

Multi-layered marble for hydrogel encapsulation

HKHyeonjin KimSeoul National UniversitySJSe Youn JangKorea Institute of Science and TechnologyJLJi Eun LeeChung-Ang University

Key Points

  • The aim is to develop a stable hydrogel encapsulation strategy utilizing a multi-layered marble concept to overcome interface instability.
  • Developed a method for hydrogel encapsulation using hydrophobic particles.
  • Formed a nonpolar liquid layer on hydrogel surfaces via interfacial bridges.
  • Deposited secondary hydrophobic layers on the liquid for added stability.
  • The multi-layered marble structure effectively prevents leakage from the hydrogel.
  • The approach maintains hydrogel performance across various applications.
  • Demonstrates versatility to accommodate different hydrogels and liquids.

Abstract

Hydrophobic skins on fruits play a crucial role in preventing dehydration and shielding against environmental stress. Inspired by this natural structure, hydrophobic encapsulation is widely employed to preserve the functionality and long-term stability of hydrogels. However, instability at the interface between hydrophobic shell and hydrogel remains a critical challenge. Here, we present a hydrogel encapsulation strategy to stabilize the incompatible interface using a concept of liquid marble, where liquid droplet is covered with hydrophobic particles. A uniform nonpolar liquid layer is first formed on the hydrogel surface through interfacial bridges with hydrophobic particles. A secondary hydrophobic particle layer is then deposited onto this liquid layer to prevent leakage, yielding a multi-layered marble (MLM) structure. This MLM-encapsulation is highly versatile, accommodating various hydrogels, liquids, and structural configurations. By maintaining hydrogel performance and functionality across diverse applications, MLM-encapsulation provides a universal and robust solution for overcoming the long-standing interfacial instability problem. Hydrogel encapsulation prevents dehydration, but maintaining interfacial stability with hydrophobic shells remains challenging. Here, the authors use a multi-layered marble strategy composed of two hydrophobic particle layers with sandwiched oil layer that stabilizes the interface.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/69c37b11b34aaaeb1a67d2fchttps://doi.org/10.1038/s41467-026-70955-6
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