TY - JOUR
T1 - Advances in Bioinspired Interfacial Adhesion with Frictional Enhancement
T2 - From Fundamental Research to Biomimetic Applications
AU - Sun, Yunfang
AU - Yang, Xuemin
AU - Liu, Guang
AU - Zhang, Liwen
AU - Fu, Yue
AU - Li, Ping
AU - Li, Weiteng
AU - Yang, Guang
AU - Cheng, Huanyu
AU - Chen, Huawei
N1 - Publisher Copyright:
© 2026 The Author(s). Small Structures published by Wiley-VCH GmbH.
PY - 2026/2
Y1 - 2026/2
N2 - Strong frictional attachment in complicated environments is of great importance for interfacial adhesion, particularly fused by the rapid advancements in frictional adhesion technologies and flexible materials. The captivating adhesion phenomena of natural creatures in diverse environments, from dry to wet and even underwater, provide significant inspiration for interfacial adhesion with frictional enhancement. This review provides an overview of the predation and survival behaviors of natural creatures in varied environments, with an emphasis on the adhesive capabilities based on structures and secretions, going from the complex relationship between these characteristics and their functions to the biomimetic applications. First, the fundamental theories and adhesion models of natural biological surfaces are introduced, followed by the discussion of important biomimetic prototypes (e.g., geckos, tree frogs, octopus, and mussels), along with general fabrication methods for frictional adhesion surfaces. Next, the significance of both engineered and bioinspired adhesives is highlighted with selected applications in practical fields. Finally, from a forward-looking perspective, the challenges and opportunities are discussed to help drive future innovation in adhesive materials through biomimetic strategies and biological materials.
AB - Strong frictional attachment in complicated environments is of great importance for interfacial adhesion, particularly fused by the rapid advancements in frictional adhesion technologies and flexible materials. The captivating adhesion phenomena of natural creatures in diverse environments, from dry to wet and even underwater, provide significant inspiration for interfacial adhesion with frictional enhancement. This review provides an overview of the predation and survival behaviors of natural creatures in varied environments, with an emphasis on the adhesive capabilities based on structures and secretions, going from the complex relationship between these characteristics and their functions to the biomimetic applications. First, the fundamental theories and adhesion models of natural biological surfaces are introduced, followed by the discussion of important biomimetic prototypes (e.g., geckos, tree frogs, octopus, and mussels), along with general fabrication methods for frictional adhesion surfaces. Next, the significance of both engineered and bioinspired adhesives is highlighted with selected applications in practical fields. Finally, from a forward-looking perspective, the challenges and opportunities are discussed to help drive future innovation in adhesive materials through biomimetic strategies and biological materials.
KW - bioinspired interfacial adhesion
KW - biological models
KW - biomimetic applications
KW - frictional enhancement
UR - https://www.scopus.com/pages/publications/105029950244
U2 - 10.1002/sstr.202500673
DO - 10.1002/sstr.202500673
M3 - 文献综述
AN - SCOPUS:105029950244
SN - 2688-4062
VL - 7
JO - Small Structures
JF - Small Structures
IS - 2
M1 - e202500673
ER -