Photo Switchable 4D Printing Remotely Controlled Responsive and Mimetic Deformation Shape Memory Polymer Nanocomposites

Author:

Feng Shiwei1,Peng Xuelin2,Cui Jingjing1,Feng Ruiqi2,Sun Yongding1,Guo Yunlong1,Lu Zhe1,Gao Weizi1,Liu Fukang1,Liang Chen1,Hu Guang1,Zhang Biao1ORCID

Affiliation:

1. Frontiers Science Center for Flexible Electronics (FSCFE) Xi'an Institute of Flexible Electronics Northwestern Polytechnical University 127 West Youyi Road Xi'an 710072 P. R. China

2. Queen Mary University of London Engineering School Northwestern Polytechnical University 127 West Youyi Road Xi'an 710072 P. R. China

Abstract

AbstractPhoto‐triggered shape morphing structures can be found in myriads of areas. Utilizing light as a switch can effectively control and regulate the precise deformation of structures. However, the integration of photo‐switching functions in shape‐morphing structures with complex geometries remains a challenge. Here, photoswitchable digital light processing based 4D printing high‐resolution and highly complex geometries, based on UV curable WO2.9 nanoparticle doped shape memory polymer nanocomposites is reported, which are highly deformable (stretchability up to ≈1000% at rubbery state) and fatigue resistant (repeatedly loaded >1200 times at ambient temperature). The presence of just trace WO2.9 nanoparticles (<0.20 wt.‰) contributes to the controlled photothermal property of nanocomposite via selective absorption of light, which enables reversibly photoswitchable (>50 times), spatial and remote control of 4D printing shape morphing structures. These findings offer a promising approach to expanding the applications of photo‐triggered shape‐morphing structures.

Funder

National Natural Science Foundation of China

Key Science and Technology Program of Shaanxi Province

Publisher

Wiley

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