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1Emerging interactively stretchable electronics with optical and electrical dual-signal feedbacks based on structural color materials显示文摘The booming development of wearable devices has aroused increasing interests in flexible and stretchable devices.With mechanosensory functionality,these devices are highly desirable on account of their wide range of applications in electronic skin,personal healthcare,human–machine interfaces and beyond.However,they are mostly limited by single electrical signal feedback,restricting their diverse applications in visualized mechanical sensing.Inspired by the mechanochromism of structural color materials,interactively stretchable electronics with optical and electrical dual-signal feedbacks are recently emerged as novel sensory platforms,by combining both of their sensing mechanisms and characteristics.Herein,recent studies on interactively stretchable electronics based on structural color materials are reviewed.Following a brief introduction of their basic components(i.e.,stretchable electronics and mechanochromic structural color materials),two types of interactively stretchable electronics with respect to the nanostructures of mechanochromic materials are outlined,focusing primarily on their design considerations and fabrication strategies.Finally,the main challenges and future perspectives of these emerging devices are discussed.Jialin Wang Kai Zhao Changqing Ye Yanlin Song 2024Nano Research2024,17,3:0
2运动捕捉技术及柔性传感器用于人体连续运动监测的研究进展显示文摘对多种运动捕捉技术和柔性传感器在当前多种领域的广泛应用进行了简单阐述。重点从关节的运动类型出发,对人体运动进行了分析,介绍了光学监测系统、惯性传感系统、磁感应测量系统和柔性应力传感系统的原理,评估了它们在捕捉人体连续运动方面的适用性,并总结了国内外研究中涉及新系统搭建、算法提升和信息处理等研究成果,以及其在提高运动捕捉性能方面的研究进展,对所综述的运动捕捉技术的优缺点进行了评述。最后,对当前运动捕捉技术进行对比,说明了当前技术成熟发展完善,但提升空间有限;柔性传感器测量能力全面,具有较大的系统发展潜力,有望成为运动捕捉技术未来的发展方向。李承翰 胡明皓 李航 相文峰 2023微纳电子技术2023,60,11:0
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