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Femtosecond laser programmed artificial musculoskeletal systems

Engineering and Technology

Femtosecond laser programmed artificial musculoskeletal systems

Z. Ma, Y. Zhang, et al.

This groundbreaking research from Zhuo-Chen Ma and colleagues unveils the creation of innovative femtosecond laser programmed artificial musculoskeletal systems for crafting 3D microbots. Their approach showcases striking examples like a pH-responsive spider microbot and a smart micro-gripper, all engineered to bring advanced functionality into the realm of micro-manipulation.... show more
Abstract
Natural musculoskeletal systems have been widely recognized as an advanced robotic model for designing robust yet flexible microbots. However, the development of artificial musculoskeletal systems at micro-nanoscale currently remains a big challenge, since it requires precise assembly of two or more materials of distinct properties into complex 3D micro/ nanostructures. In this study, we report femtosecond laser programmed artificial musculoskeletal systems for prototyping 3D microbots, using relatively stiff SU-8 as the skeleton and pH-responsive protein (bovine serum albumin, BSA) as the smart muscle. To realize the programmable integration of the two materials into a 3D configuration, a successive on-chip two-photon polymerization (TPP) strategy that enables structuring two photosensitive materials sequentially within a predesigned configuration was proposed. As a proof-of-concept, we demonstrate a pH-responsive spider microbot and a 3D smart micro-gripper that enables controllable grabbing and releasing. Our strategy provides a universal protocol for directly printing 3D microbots composed of multiple materials.
Publisher
Nature Communications
Published On
Sep 10, 2020
Authors
Zhuo-Chen Ma, Yong-Lai Zhang, Bing Han, Xin-Yu Hu, Chun-He Li, Qi-Dai Chen, Hong-Bo Sun
Tags
femtosecond laser
3D microbots
pH-responsive materials
two-photon polymerization
micro-manipulation
smart materials
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