Diem Achim M, Bill Joachim, Burghard Zaklina
Institute for Materials Science, University of Stuttgart, 70569, Stuttgart, Germany.
Adv Sci (Weinh). 2023 Jul;10(21):e2302103. doi: 10.1002/advs.202302103. Epub 2023 May 10.
Although rolling origami technology has provided convenient access to three-dimensional (3D) microstructure systems, the high yield and scalable construction of complex rolling structures with well-defined geometry without impeding functionality has remained challenging. The straightforward, one-step fabrication that uses external mechanical stress to scroll micrometer thick, flexible planar films with centimeter lateral dimensions into tubular or spiral geometry within a few seconds is demonstrated. The method allows controlling the scrolls' diameter, number of windings and nanostructured surface morphology, and is applicable to a wide range of functional materials. The obtained 3D structures are highly promising for various applications including sensors, actuators, microrobotics, as well as energy storage and electronic devices.
尽管滚动折纸技术为三维(3D)微结构系统提供了便捷的途径,但要高产且可扩展地构建具有明确几何形状且不影响功能的复杂滚动结构仍然具有挑战性。本文展示了一种直接的一步制造方法,该方法利用外部机械应力在几秒钟内将具有厘米级横向尺寸的微米厚柔性平面薄膜卷成管状或螺旋状几何结构。该方法能够控制卷轴的直径、缠绕数和纳米结构表面形态,并且适用于多种功能材料。所获得的3D结构在包括传感器、致动器、微型机器人以及能量存储和电子设备等各种应用中具有很大的潜力。