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A Universal high accuracy wearable pulse monitoring system via high sensitivity and large linearity graphene pressure sensor

机译:通用高精度可穿戴脉冲监测系统,通过高灵敏度和大线性石墨烯压力传感器

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摘要

Long-term accurate pulse monitoring can provide much physiological parameter information in a non-invasive way. A versatile pressure sensor with high sensitivity over a wide linear range (up to 10 kPa) is thus especially desired for this purpose. However, the trade-off between linearity region and sensitivity has not been well balanced. Despite micro/nanostructure morphologies, our simulation and mechanism analyses found that a thinner structure and better conductivity property of the sensing layer contribute to a larger linearity range and higher sensitivity, respectively. However, these two properties are often difficult to achieve simultaneously in one traditional material. Herein, a novel material design strategy is developed to fabricate a self-assembled graphene sensing film, in which the conductivity and thickness can be well balanced. As a result, our sensor exhibits unprecedented comprehensive properties with both high sensitivity (1875.53 kPa(-1)) and wide linear detection range (0-40 kPa). The sensor is also endowed with good stability and high peak signal-noise ratio (78 dB). Taking advantages of these performances, a universal high accuracy wireless and wearable pulse monitoring system was built. This platform first provides the subtle arterial pulse signal information even under the interference of strong body movement in real-time (during running or cycling), which could not have been realized before. This wearable system is expected to provide more rich and accurate information for personalized diagnostic applications in the future.
机译:长期精确的脉冲监测可以以非侵入方式提供许多生理参数信息。因此,特别需要具有高灵敏度的多功能压力传感器(最多10kPa),特别是为此目的。但是,线性区域和敏感之间的权衡并未得到很好的平衡。尽管微/纳米结构形态,我们的模拟和机构分析发现,传感层的较薄结构和更好的电导率分别有助于更大的线性范围和更高的灵敏度。然而,这两个性质通常难以在一种传统材料中同时实现。这里,开发了一种新颖的材料设计策略来制造自组装的石墨烯传感膜,其中导电性和厚度可以平衡。结果,我们的传感器具有前所未有的综合性能,具有高灵敏度(1875.53kPa(-1))和宽线性检测范围(0-40kPa)。传感器还具有良好的稳定性和高峰信噪比(78 dB)。采用这些表演的优势,构建了一种通用的高精度无线和可穿戴脉冲监测系统。该平台首先提供微妙的动脉脉冲信号信息,即使在实时(在跑步或循环期间)的干扰下也可以在之前的情况下实现。这款可穿戴系统预计将来为未来提供更丰富和准确的信息,可在未来为个性化诊断应用提供更丰富和准确的信息。

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  • 来源
    《Nano Energy》 |2019年第2019期|共12页
  • 作者单位

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

    Chinese Acad Sci Beijing Inst Nanoenergy &

    Nanosyst Beijing Key Lab Micronano Energy &

    Sensor Beijing 100083 Peoples R China;

    Natl Sun Yat Sen Univ Ctr Crystal Res Dept Mat &

    Optoelect Sci Kaohsiung 804 Taiwan;

    Chinese Acad Sci Ningbo Inst Mat Technol &

    Engn Zhejiang Key Lab Marine Mat &

    Protect Technol Key Lab Marine Mat &

    Related Technol Ningbo 315201 Zhejiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Graphene; Self-assembly; Piezo-resistive sensor; Wearable devices; Pulse monitoring;

    机译:石墨烯;自组装;压电传感器;可穿戴设备;脉冲监测;

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