基石
具身认知
可穿戴计算机
感知
可扩展性
可穿戴技术
纳米技术
工程类
材料科学
人机交互
钥匙(锁)
机械工程
计算机科学
系统工程
触觉传感器
增强现实
压力传感器
建筑
智能决策支持系统
纳米传感器
仿生学
透视图(图形)
软机器人
人工智能
机器人学
新兴技术
作者
Hao Pang,Qilin Hua,Guozhen Shen
摘要
Flexible pressure sensors are the cornerstone of tactile perception for embodied intelligence, serving as critical components in next-generation technologies such as soft robotics, personalized healthcare, and immersive human-machine interfaces. Microstructure engineering has emerged as a pivotal strategy for dramatically enhancing key sensor performance metrics, including sensitivity, detection limit, linear range, and response time. This review comprehensively summarizes recent advancements of high-performance flexible intelligent pressure sensors employing microstructural designs. It systematically explores the design strategies and fabrication techniques of various microstructures, including pyramids, hemispheres, micropillars, porous networks, and their hybrids, and elucidates their role in optimizing sensor performance. Furthermore, cutting-edge applications across wearable electronics, electronic skin, and virtual/augmented reality (VR/AR) systems are highlighted, where embodied intelligence is enabled through real-time tactile feedback. Finally, the review presents a forward-looking perspective on prevailing challenges and future research directions, focusing on scalable manufacturing, seamless system integration, and the development of intelligent sensing systems for real-world artificial intelligence.
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