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Updated: Sep 24, 2026

Investigating Single Molecule Adhesion by Atomic Force Spectroscopy
Published on: February 27, 2015
Interfacial adhesive materials and chemistry in extreme/complex environments
Xizi Wan1,2, Jingwei Lu3, Feilong Zhang1,2
1Laboratory of Bio-inspired Smart Interface Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China. stwang@mail.ipc.ac.cn.
Abstract:
Extreme and complex environments, ranging from deep sea, polar, and aerospace settings to salt-lake chemical processes, and physiological conditions, demand adhesives with exceptional tolerance and stability. Traditional adhesive materials are prone to interfacial failure, material embrittlement, or chemical decomposition, which severely restricts their practical applications under extreme and complex conditions. In this tutorial review, we focus on four representative extreme conditions: high temperature, low temperature, high salinity, and physiological media. We first briefly outline the evolution of both traditional and bioinspired adhesives, alongside their limitations in extreme settings. We then elucidate the dominant failure mechanisms of adhesives in these environments and summarize state-of-the-art material design strategies to circumvent these issues. Finally, we highlight the critical bottlenecks in current research and propose future directions. This review intends to offer theoretical guidance and design insights for the development of high-performance adhesives suitable for extreme and complex conditions.
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