Wei Chuanqi, Gendelman Oleg V, Jiang Youhua
Department of Mechanical Engineering (Robotics), Guangdong Technion-Israel Institute of Technology, Shantou, Guangdong 515063, China.
Faculty of Mechanical Engineering, Technion-Israel Institute of Technology, Haifa 3200003, Israel.
ACS Nano. 2025 Feb 25;19(7):7317-7326. doi: 10.1021/acsnano.4c17839. Epub 2025 Feb 12.
Flexible cilia of natural species are well-known for their capabilities to transport objects by their collective motions. Therefore, well-ordered, flexible, and stimuli-responsive artificial cilia have been developed to render similar functionalities. However, flexibility and stimuli-responsiveness of a microcilium are inherently incompatible with durability/robustness against mechanical damage, limiting the artificial cilia to applications with only gentle operating conditions. The critical (but long neglected in surface engineering) property of natural hairs is that they are rooted under the skin, allowing the regeneration of the damaged hairs from their undamaged roots (hair follicles). To integrate the functionalities of cilia and hair, we developed a fabrication strategy called stencil-assisted self-alignment of iron-laden aerosols to produce a surface termed armored regenerable cilia. This surface contains well-ordered, appropriately packed, flexible, and magneto-responsive artificial wires rooted within pores. The wall of the pore serves as the armor to protect the bottom part of the wires from mechanical damage, allowing the remaining wires to regrow when the self-alignment of iron-laden aerosols repeats. The armored regenerable cilia with functionalities such as water repellency, object manipulation, and impurity removal are expected to guide the design and fabrication of smart surfaces serving real-life applications.
天然物种的柔性纤毛以其通过集体运动运输物体的能力而闻名。因此,人们开发了有序、灵活且对刺激有响应的人造纤毛来实现类似的功能。然而,微纤毛的柔韧性和对刺激的响应性与抗机械损伤的耐久性/稳健性本质上是不相容的,这限制了人造纤毛仅适用于操作条件温和的应用。天然毛发的关键特性(但在表面工程中长期被忽视)是它们扎根于皮肤之下,使得受损毛发能够从其未受损的根部(毛囊)再生。为了整合纤毛和毛发的功能,我们开发了一种名为模板辅助载铁气溶胶自对准的制造策略,以制造一种称为装甲可再生纤毛的表面。该表面包含有序排列、适当堆积、灵活且具有磁响应性的人造丝,这些人造丝扎根于孔隙中。孔隙壁起到装甲的作用,保护丝的底部免受机械损伤,当载铁气溶胶的自对准重复进行时,使剩余的丝能够再生。具有防水、物体操纵和杂质去除等功能的装甲可再生纤毛有望指导用于实际应用的智能表面的设计和制造。