Shenzhen Key Laboratory of Biomimetic Robotics and Intelligent Systems, Department of Mechanical and Energy Engineering, Southern University of Science and Technology, Shenzhen, Guangdong, 518055, China.
Guangdong Provincial Key Laboratory of Human-Augmentation and Rehabilitation Robotics in Universities, Southern University of Science and Technology, Shenzhen, 518055, China.
Nat Commun. 2022 Aug 29;13(1):5083. doi: 10.1038/s41467-022-32859-z.
Microchannels are the essential elements in animals, plants, and various artificial devices such as soft robotics, wearable sensors, and organs-on-a-chip. However, three-dimensional (3D) microchannels with complex geometry and a high aspect ratio remain challenging to generate by conventional methods such as soft lithography, template dissolution, and matrix swollen processes, although they are widespread in nature. Here, we propose a simple and solvent-free fabrication method capable of producing monolithic microchannels with complex 3D structures, long length, and small diameter. A soft template and a peeling-dominant template removal process are introduced to the demoulding process, which is referred to as soft demoulding here. In combination with thermal drawing technology, microchannels with a small diameter (10 µm), a high aspect ratio (6000, length-to-diameter), and intricate 3D geometries are generated. We demonstrate the vast applicability and significant impact of this technology in multiple scenarios, including soft robotics, wearable sensors, soft antennas, and artificial vessels.
微通道是动物、植物和各种人工设备(如软机器人、可穿戴传感器和芯片上器官)中的基本元素。然而,具有复杂几何形状和高纵横比的三维(3D)微通道仍然难以通过传统方法(如软光刻、模板溶解和基质溶胀过程)生成,尽管它们在自然界中很普遍。在这里,我们提出了一种简单且无溶剂的制造方法,能够生产具有复杂 3D 结构、长长度和小直径的整体微通道。在脱模过程中引入了软模板和以脱模为主的模板去除过程,这里称为软脱模。结合热拉伸技术,生成了具有小直径(10 µm)、高纵横比(6000,长度与直径比)和复杂 3D 几何形状的微通道。我们展示了这项技术在多个场景中的广泛适用性和重大影响,包括软机器人、可穿戴传感器、软天线和人工血管。