蛋壳
极限(数学)
检出限
蛋壳膜
纳米技术
材料科学
计算机科学
化学
生物
数学
色谱法
生态学
数学分析
作者
Penglin Lu,Tianyi Xu,Chongbin Li,Xincheng Wang,Weiping Lian,Chongbing Li,Pengyu Yang,Shanshan Guan
摘要
The high-performance flexible pressure sensors demonstrate significant potential in wearable electronics, robotics, human-machine interfaces, and healthcare. However, the preparation of bionic flexible sensors with high sensitivity and low detection limit is still a big challenge. This study proposes a bionic flexible sensor based on the microstructure of eggshells, which improves sensing performance and reduces detection limits by constructing a bionic body with good microstructure. The enhancement effect of microstructure on sensor sensitivity was studied by comparative experiments. Experimental results show that the eggshell-inspired bionic flexible sensor in this study has a high sensitivity of 15.01 kPa-1 and a low detection limit (~4 Pa). In addition, the bionic sensor has rapid response time (~180 ms) and excellent durability (~1000 cycles), making it a reliable platform for human body detection, dynamic load and sound monitoring. This study provides great potential for innovative applications of bionic flexible sensors in electronic skin and sound monitoring. At the same time, this study also provides a new solution for reducing environmental pollution and rationally utilizing garbage.
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