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Title: Bioinspired hierarchical structures for contact-sensible adhesives
Authors: Hu, H 
Wang, D
Tian, H
Huang, Q 
Wang, C
Chen, X
Gao, Y 
Li, X
Chen, X
Zheng, Z 
Shao, J 
Issue Date: 16-Feb-2022
Source: Advanced functional materials, 16 Feb. 2022, v. 32, no. 8, 2109076
Abstract: Bioinspired structural adhesives that are capable of bonding two objects together have recently found widespread applications in industrial fields, because of their promising reusability and environmental friendliness. However, such adhesives are usually monofunctional and cannot yield real-time detection on the adhesion status, which is important for both biological systems (e.g., Gecko) and engineered mimics. This study reports a new hierarchical structure with the monolithic integration of adhesion and sensing functions, namely, contact-sensible adhesive (CSA). The proposed CSA is composed of mushroom-shaped microstructures on the top layer for providing strong adhesion, and a pillar array sandwiched by a pair of foil electrodes on the bottom layer as a compliant backing and a capacitive sensor. The CSA is not only sensitive to the external pressure, tension, and shear loads, but also shows enhanced adhesion on uneven surfaces, due to the high compliance of the hierarchical system. As a proof of concept, the as-prepared CSA is applied as a contact interface in a gripper to complete the grasping task.
Keywords: Adhesive structures
Bioinspired adhesion
Capacitive sensors
Grasping task
Uneven surfaces
Publisher: Wiley-VCH
Journal: Advanced functional materials 
ISSN: 1616-301X
EISSN: 1616-3028
DOI: 10.1002/adfm.202109076
Rights: © 2021 Wiley-VCH GmbH
This is the peer reviewed version of the following article: Hu, H., Wang, D., Tian, H., Huang, Q., Wang, C., Chen, X., Gao, Y., Li, X., Chen, X., Zheng, Z., Shao, J., Bioinspired Hierarchical Structures for Contact-Sensible Adhesives. Adv. Funct. Mater. 2022, 32, 2109076, which has been published in final form at https://doi.org/10.1002/adfm.202109076. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. This article may not be enhanced, enriched or otherwise transformed into a derivative work, without express permission from Wiley or by statutory rights under applicable legislation. Copyright notices must not be removed, obscured or modified. The article must be linked to Wiley’s version of record on Wiley Online Library and any embedding, framing or otherwise making available the article or pages thereof by third parties from platforms, services and websites other than Wiley Online Library must be prohibited.
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