Tree-frog-inspired osmocapillary adhesive bonding to diverse substrates

Fuente: arXiv
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Main Authors: Shao, Zefan, Ji, Rui, Liu, Qihan
Format: Preprint
Published: 2025
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author Shao, Zefan
Ji, Rui
Liu, Qihan
author_facet Shao, Zefan
Ji, Rui
Liu, Qihan
contents The performance of conventional pressure-sensitive adhesives (PSA) critically relies on the wetting of the adhesive over the substrate. When the wetting is hindered by low surface-energy substrates or the presence of interfacial liquids, the adhesion is greatly compromised. Here, inspired by tree frogs that secrete mucus with surfactants to achieve good wetting over diverse dry and wet substrates, we explore a novel mechanism, osmocapillary adhesion, to use interfacial liquid modified by surfactant to wet diverse substrates and achieve robust reversible adhesion. We show that osmocapillary adhesives greatly outperform conventional PSAs over low-energy, moist, oily, and greasy substrates while achieving similar performance on high-energy surfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2509_05730
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Tree-frog-inspired osmocapillary adhesive bonding to diverse substrates
Shao, Zefan
Ji, Rui
Liu, Qihan
Soft Condensed Matter
The performance of conventional pressure-sensitive adhesives (PSA) critically relies on the wetting of the adhesive over the substrate. When the wetting is hindered by low surface-energy substrates or the presence of interfacial liquids, the adhesion is greatly compromised. Here, inspired by tree frogs that secrete mucus with surfactants to achieve good wetting over diverse dry and wet substrates, we explore a novel mechanism, osmocapillary adhesion, to use interfacial liquid modified by surfactant to wet diverse substrates and achieve robust reversible adhesion. We show that osmocapillary adhesives greatly outperform conventional PSAs over low-energy, moist, oily, and greasy substrates while achieving similar performance on high-energy surfaces.
title Tree-frog-inspired osmocapillary adhesive bonding to diverse substrates
topic Soft Condensed Matter
url https://arxiv.org/abs/2509.05730