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首页> 外文期刊>Applied Physics >Elastomeric polydimethylsiloxane polymer on conductive interdigitated electrode for analyzing skin hydration dynamics
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Elastomeric polydimethylsiloxane polymer on conductive interdigitated electrode for analyzing skin hydration dynamics

机译:用于分析皮肤水合动力学的导电互化电极的弹性聚二甲基硅氧烷聚合物

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摘要

With an approach towards generating a wearable skin hydration detecting system, simple, cheap, and flexible skin hydration sensing strategy was demonstrated here using an interdigitated electrode (IDE) coated with polydimethylsiloxane (PDMS) matrix. Aluminium IDE with a 400 μm gap and 250 μm electrode sizes were fabricated using a photolithography method. Morphological characterizations were performed using a high power microscope, 3D-profilometer, and scanning electron microscope. The dimensions of electrodes and gaps measured through electron microscopic analysis affirmed the exactness of IDE and the fabrication process. After coated with PDMS polymer, the IDE/PDMS surface was examined under a high power microscope and 3D-profilometer. The optical characterization revealed the polymer was coated on IDE through the color-shade changes and smooth surface observed under an optical microscope and the respective 3D-visualization. IDE/PDMS was also analyzed by an atomic force microscope, revealing the smoothness of the IDE surface. Electrical characterizations were performed using different pH and urea solutions and the sweat to investigate the influence of real-time and artificial sweat on IDE/PDMS. As the device showed appropriate results with real-time sweat and no effect with artificial interferences, it is highly encouraged and recommended for detecting skin hydration and the related illnesses with the point-of-care concept.
机译:使用涂覆有聚二甲基硅氧烷(PDMS)基质的涂覆的电极(IDE),在此处展示了耐磨性皮肤水合检测系统的方法,简单,便宜,柔性的皮肤水合传感策略。使用光刻法制造具有400μm间隙和250μm电极尺寸的铝IDE。使用高功率显微镜,3D型材计和扫描电子显微镜进行形态学特征。通过电子显微镜分析测量的电极和间隙的尺寸肯定了IDE的准确性和制造过程。在涂有PDMS聚合物后,在高功率显微镜和3D型材仪下检查IDE / PDMS表面。光学表征显示聚合物通过在光学显微镜和各个3D可视化下观察到的光学变化和光滑表面。通过原子力显微镜分析IDE / PDMS,揭示IDE表面的光滑度。使用不同的pH和尿素溶液和汗液进行电气特性,以研究实时和人造汗对IDE / PDMS的影响。由于该装置显示适当的效果,并且对人工干扰没有效果,因此受到高度鼓舞,并推荐用护理点概念检测皮肤水合和相关疾病。

著录项

  • 来源
    《Applied Physics》 |2020年第9期|756.1-756.11|共11页
  • 作者单位

    Institute of Nano Electronic Engineering Universiti Malaysia Perlis 01000 Kangar Pedis Malaysia;

    Advanced Communication Engineering (ACE) Centre of Excellence School of Computer and Communication Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia;

    Advanced Communication Engineering (ACE) Centre of Excellence School of Computer and Communication Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia;

    Advanced Communication Engineering (ACE) Centre of Excellence School of Computer and Communication Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia School of Microelectronic Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia;

    Institute of Nano Electronic Engineering Universiti Malaysia Perlis 01000 Kangar Pedis Malaysia School of Bioprocess Engineering Universiti Malaysia Perlis 02600 Arau Perlis Malaysia;

    Advanced Communication Engineering (ACE) Centre of Excellence School of Computer and Communication Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia;

    Advanced Communication Engineering (ACE) Centre of Excellence School of Computer and Communication Engineering Universiti Malaysia Perlis Campus Pauh Putra 02600 Arau Perlis Malaysia;

    Nanotechnology and Catalysis Research Centre Deputy Vice Chancellor (Research and Innovation) Office University of Malaya Kuala Lumpur Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Skin sensor; Optical characterization; Skin hydration; Sweat;

    机译:皮肤传感器;光学表征;皮肤水合;汗;

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