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MWCNT enabled smart textiles based flexible and wearable sensor for human motion and humidity monitoring

机译:MWCNT使智能纺织品基于柔性和可穿戴传感器,用于人体运动和湿度监测

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In the study, we present a simple MWCNT enhanced textile based wearable device which can measure the change in human body motion as well as humidity of the environment for practical applications. Multiwalled carbon nanotube modified textile was fabricated by spray layer by layer method. Morphology, structure, thermal and conductive properties of the MWCNT modified textiles were investigated. The resistance of MWCNT network on textile could be controlled in a wide range from 100 MOhm to 2 KOhm by varying the concentration (1 mg/mL to 5 mg/mL) and a number of spray coating of MWCNT. The fabricated MWCNT enhanced textile sensors were attached to various human body parts (such as forehead, cheek, neck, abdomen, wrist, elbow, knee, wrist) and change in resistance pertaining to human body motion was measured. The wrist movement shows a decrease in the sensor resistance and elbow movement shows an increase in the resistance depends upon forward and reverse (due to compression and expansion of MWCNT junction network) bending of MWCNT coated fabric sensor. Further, the smart fabric was applied to monitor a wide range of humidity (RH = 19-93%) at room temperature. The sensor show high response for relative humidity (RH) of 57% with quick response (4 +/- 2 s) and recovery times (14 +/- 2 s) at room temperature. The change in resistance of the sensor on exposure to humidity could be attributed to the interaction of water molecules with surface (COOH, and OH) functional groups on MWCNT. The present results could be interesting for the development of simple, large scale and low cost textile based wearable sensors for multifunctional sensing applications.
机译:在这项研究中,我们提出了一种简单的基于多壁碳纳米管增强织物的可穿戴设备,它可以测量人体运动的变化以及实际应用环境的湿度。采用逐层喷射法制备了多壁碳纳米管改性织物。研究了多壁碳纳米管改性纺织品的形态、结构、热性能和导电性能。通过改变浓度(1 mg/mL至5 mg/mL)和多个MWCNT喷涂层,可将MWCNT网络在纺织品上的电阻控制在100 MOhm至2 KOhm的范围内。将所制备的MWCNT增强纺织传感器连接到人体的各个部位(如前额、脸颊、颈部、腹部、手腕、肘部、膝盖、手腕),并测量与人体运动有关的阻力变化。手腕运动表明传感器电阻降低,肘部运动表明电阻增加取决于MWCNT涂层织物传感器的正向和反向弯曲(由于MWCNT连接网络的压缩和膨胀)。此外,智能织物还可用于监测室温下的大范围湿度(相对湿度=19-93%)。该传感器对相对湿度(RH)的响应高达57%,在室温下具有快速响应(4+/-2 s)和恢复时间(14+/-2 s)。传感器在湿度下的电阻变化可归因于水分子与MWCNT表面(COOH和OH)官能团的相互作用。目前的研究结果对于开发简单、大规模和低成本的基于纺织品的多功能传感应用可穿戴传感器可能很有意义。

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