College of Communication Engineering, Jilin University, Changchun 130022, China.
Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130022, China.
ACS Nano. 2022 Nov 22;16(11):18048-18057. doi: 10.1021/acsnano.2c04251. Epub 2022 Oct 18.
Microcantilevers are one of the most essential sensitive elements for various mechanical sensors. Their sensing performance determines the index level of a series of sensors. To date, the long-standing trade-off between ultrasensitivity and long-term durability of microcantilevers still remains a challenge. In nature, scorpions can sense vibrations as low as 10 nm amplitude through their circular tip slits sensilla. Such slit sensilla embedded in the exoskeleton of walking legs endure the compressing and stretching of every movement without spontaneous fracture failures. Here, we focused on the structural design of the circular tip slits which concentrate stress effectively and disperse energy smoothly, with the result that the microcantilevers are ultrasensitive and durable simultaneously in a single element. We devised a reproducible circular tip slits cantilever with enhanced sensitivity and ultralow detection limits to monitor 7 nm amplitude vibrations. The sensor possessed excellent durability and remained highly consistent with the correlation coefficient of nearly 0.999 over 100 000 cycles. Furthermore, the circular tip slits cantilever could precisely sense diverse subtle mechanical signals and exhibited potential applications in monitoring respiratory patterns. The simple geometric design can be easily manufactured on various sensory materials for applications requiring ultrahigh sensitivity and long-time durability.
微悬臂梁是各种机械传感器中最基本的敏感元件之一。其传感性能决定了一系列传感器的指标水平。迄今为止,微悬臂梁的超高灵敏度和长期耐久性之间的长期权衡仍然是一个挑战。在自然界中,蝎子可以通过圆形尖端狭缝感受器感知低至 10nm 振幅的振动。这种嵌入在步行腿外骨骼中的狭缝感受器可以承受每次运动的压缩和拉伸,而不会自发断裂。在这里,我们专注于圆形尖端狭缝的结构设计,该设计可以有效地集中应力和平滑地分散能量,从而使微悬臂梁在单个元件中同时具有超高灵敏度和耐用性。我们设计了一种具有增强灵敏度和超低检测极限的可重复的圆形尖端狭缝悬臂梁,以监测 7nm 振幅的振动。该传感器具有出色的耐用性,在超过 100000 个循环中,相关系数接近 0.999,保持高度一致。此外,圆形尖端狭缝悬臂梁可以精确地感知各种微妙的机械信号,并在监测呼吸模式方面具有潜在的应用。这种简单的几何设计可以很容易地在各种敏感材料上制造,以满足超高灵敏度和长时间耐久性的应用需求。