Literature DB >> 31017157

Gecko toe pads inspired in situ switchable superhydrophobic shape memory adhesive film.

Yongzhen Wang1, Hua Lai, Zhongjun Cheng, Haiyang Zhang, Enshuang Zhang, Tong Lv, Yuyan Liu, Lei Jiang.   

Abstract

Recently, smart adhesive superhydrophobic surfaces have attracted much attention. However, it is still a challenge to obtain a superhydrophobic surface with shape memory adhesive performance. Herein, inspired by the special back-scrolling/unfolding ability of gecko toe pads and corresponding tunable adhesion, we report such a film produced by sticking a layer of superhydrophobic pillar structured polyurethane (s-PU) onto a shape memory polyurethane-cellulose nanofiber (PU-CNF) substrate to mimic the hair-like skin structure and underlying muscle of the gecko toe pads, respectively. Similar to the muscle of the gecko toe pads, the excellent shape memory effect of the PU-CNF substrate can help the obtained film to memorize and repeatedly display different shapes and solid/water contact models. Thus reversible switching between multiple states from the low-adhesive rolling performance to the high-adhesive pinning performance can be realized. Meanwhile, based on its smart wetting performance, not only the traditional in situ capture/release of one microdroplet, but also the step-by-step release of different droplets can be realized on our film. This work reports a new superhydrophobic shape memory adhesive film, which offers a novel strategy for surface adhesion control and meanwhile opens a new road for applications in controlled droplet manipulation.

Entities:  

Year:  2019        PMID: 31017157     DOI: 10.1039/c9nr00154a

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  1 in total

1.  Bioinspired Adhesive and Antibacterial Microneedles for Versatile Transdermal Drug Delivery.

Authors:  Xiaoxuan Zhang; Guopu Chen; Yunru Yu; Lingyu Sun; Yuanjin Zhao
Journal:  Research (Wash D C)       Date:  2020-05-08
  1 in total

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