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Exploring 1D and 2D Nanomaterials for Health Monitoring Wearable Devices

机译:探索1D和2D纳米材料用于健康监控可穿戴设备

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In this work we explore 1D and 2D nanomaterials (carbon nanotubes and MoS2, respectively) as the core sensing components of novel sensitive and highly flexible strain sensors to monitor patients' vital signs. We assess the materials performance following a multi-disciplinary and multi-level approach, starting from atomistic simulations, up to device fabrication and applications. We successfully developed a CNT-based sensor able to detect very low strain (~2%), and with GF up to ~60 at 120% strain. We tested such sensor for the detection of the respiratory rate in living beings, and we showed that these materials are excellent candidates to be used for the development of next generation health monitoring wearable devices.
机译:在这项工作中,我们探索1D和2D纳米材料(分别)作为新型敏感和高度灵活的应变传感器的核心传感组件,以监测患者的生命体征。 我们根据多学科和多级别方法评估材料性能,从原始模拟开始,达到设备制造和应用。 我们成功开发了一种基于CNT的传感器,能够检测到非常低的应变(〜2%),并且GF高达约〜60处的菌株。 我们测试了这种传感器,用于检测生物中的呼吸率,我们表明这些材料是用于开发下一代健康监测可穿戴设备的优异候选者。

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