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Topical Review | Open Access

Femtosecond laser direct writing of functional stimulus-responsive structures and applications

Yuxuan Zhang Dong Wu Yachao ZhangYucheng BianChaowei Wang( )Jiawen LiJiaru ChuYanlei Hu ( )
CAS Key Laboratory of Mechanical Behavior and Design of Materials, Key Laboratory of Precision Scientific Instrumentation of Anhui Higher Education Institutes, Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei 230027, People’s Republic of China
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Abstract

Diverse natural organisms possess stimulus-responsive structures to adapt to the surrounding environment. Inspired by nature, researchers have developed various smart stimulus-responsive structures with adjustable properties and functions to address the demands of ever-changing application environments that are becoming more intricate. Among many fabrication methods for stimulus-responsive structures, femtosecond laser direct writing (FsLDW) has received increasing attention because of its high precision, simplicity, true three-dimensional machining ability, and wide applicability to almost all materials. This paper systematically outlines state-of-the-art research on stimulus-responsive structures prepared by FsLDW. Based on the introduction of femtosecond laser-matter interaction and mainstream FsLDW-based manufacturing strategies, different stimulating factors that can trigger structural responses of prepared intelligent structures, such as magnetic field, light, temperature, pH, and humidity, are emphatically summarized. Various applications of functional structures with stimuli-responsive dynamic behaviors fabricated by FsLDW, as well as the present obstacles and forthcoming development opportunities, are discussed.

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International Journal of Extreme Manufacturing
Article number: 042012

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Cite this article:
Zhang Y, Wu D, Zhang Y, et al. Femtosecond laser direct writing of functional stimulus-responsive structures and applications. International Journal of Extreme Manufacturing, 2023, 5(4): 042012. https://doi.org/10.1088/2631-7990/acf798

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Received: 19 March 2023
Revised: 30 May 2023
Accepted: 07 September 2023
Published: 29 September 2023
© 2023 The Author(s).

Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.