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Programming hydrogel adhesion with engineered polymer network topology

delete2023-09-19
delete10
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OA
AI
Z
Zhen Yang
G
Guangyu Bao
R
Ran Huo
S
Shuaibing Jiang
X
Xingwei Yang
X
Xiang Ni
L
Luc Mongeau
R
Rong Long
J
Jianyu Li *
DOI:10.1073/pnas.2307816120delete
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摘要

摘要

En 中文
Hydrogel adhesion that can be easily modulated in magnitude, space, and time is desirable in many emerging applications ranging from tissue engineering and soft robotics to wearable devices. In synthetic materials, these complex adhesion behaviors are often achieved individually with mechanisms and apparatus that are difficult to integrate. Here, we report a universal strategy to embody multifaceted adhesion programmability in synthetic hydrogels. By designing the surface network topology of a hydrogel, supramolecular linkages that result in contrasting adhesion behaviors are formed on the hydrogel interface. The incorporation of different topological linkages leads to dynamically tunable adhesion with high-resolution spatial programmability without alteration of bulk mechanics and chemistry. Further, the association of linkages enables stable and tunable adhesion kinetics that can be tailored to suit different applications. We rationalize the physics of polymer chain slippage, rupture, and diffusion at play in the emergence of the programmable behaviors. With the understanding, we design and fabricate various soft devices such as smart wound patches, fluidic channels, drug-eluting devices, and reconfigurable soft robotics. Our study presents a simple and robust platform in which adhesion controllability in multiple aspects can be easily integrated into a single design of a hydrogel network.
Keyword:
polymer gels
hydrogel adhesives
controlled adhesion
polymer entanglement
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期刊

P
Proceedings of the National Academy of Sciences of the United States of America
IF:
9.1
论文数:
10.8W
被引数:
73.5W

机构

University of Colorado System 封面图
University of Colorado System
学者数:
6.3W
论文数: 5.5W
被引数: 1.8K
M
McGill University
学者数:
5.5W
论文数: 4.9W
被引数: 7.0W
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