Department of Physics, Virginia Commonwealth University, Richmond, VA, 23284, USA.
Sustainable Technology and Wellness R&D Group, Korea Institute of Industrial Technology (KITECH), Jeju-si, Jeju-do, 63243, Republic of Korea.
Adv Sci (Weinh). 2023 Sep;10(26):e2303164. doi: 10.1002/advs.202303164. Epub 2023 Jul 23.
Bio-inspired cilium-based mechanosensors offer a high level of responsiveness, making them suitable for a wide range of industrial, environmental, and biomedical applications. Despite great promise, the development of sensors with multifunctionality, scalability, customizability, and sensing linearity presents challenges due to the complex sensing mechanisms and fabrication methods involved. To this end, high-aspect-ratio polycaprolactone/graphene cilia structures with high conductivity, and facile fabrication are employed to address these challenges. For these 3D-printed structures, an "inter-cilium contact" sensing mechanism that enables the sensor to function akin to an on-off switch, significantly enhancing sensitivity and reducing ambiguity in detection, is proposed. The cilia structures exhibit high levels of customizability, including thickness, height, spacing, and arrangement, while maintaining mechanical robustness. The simplicity of the sensor design enables highly sensitive detection in diverse applications, encompassing airflow and water flow monitoring, braille detection, and debris recognition. Overall, the unique conductive cilia-based sensing mechanism that is proposed brings several advantages, advancing the development of multi-sensing capabilities and flexible electronic skin applications in smart robotics and human prosthetics.
受仿生纤毛启发的机械传感器具有高响应性,非常适合广泛的工业、环境和生物医学应用。尽管前景广阔,但由于涉及复杂的传感机制和制造方法,具有多功能性、可扩展性、可定制性和线性传感的传感器的开发仍然具有挑战性。为此,采用具有高导电性和易于制造的高纵横比聚己内酯/石墨烯纤毛结构来解决这些挑战。对于这些 3D 打印结构,提出了一种“纤毛间接触”传感机制,使传感器能够像开/关开关一样工作,显著提高了灵敏度并减少了检测中的歧义。纤毛结构具有高度的可定制性,包括厚度、高度、间距和排列,同时保持机械鲁棒性。传感器设计的简单性使得在各种应用中能够进行高度灵敏的检测,包括气流和水流监测、盲文检测和碎片识别。总的来说,所提出的独特的基于导电纤毛的传感机制具有多个优势,推进了多传感能力的发展和智能机器人和人类假肢中的柔性电子皮肤应用。