Rajan Gopika, Morgan Joseph J, Murphy Conor, Torres Alonso Elias, Wade Jessica, Ott Anna K, Russo Saverio, Alves Helena, Craciun Monica F, Neves Ana I S
College of Engineering, Mathematics and Physical Sciences, University of Exeter, North Park Road, EX4 4QF Exeter, United Kingdom.
Department of Physics and Centre for Plastic Electronics, Imperial College London, London SW7 2AZ, United Kingdom.
ACS Appl Mater Interfaces. 2020 Jul 1;12(26):29861-29867. doi: 10.1021/acsami.0c08397. Epub 2020 Jun 22.
Graphene-coated polypropylene (PP) textile fibers are presented for their use as temperature sensors. These temperature sensors show a negative thermal coefficient of resistance (TCR) in a range between 30 and 45 °C with good sensitivity and reliability and can operate at voltages as low as 1 V. The analysis of the transient response of the temperature on resistance of different types of graphene produced by chemical vapor deposition (CVD) and shear exfoliation of graphite (SEG) shows that trilayer graphene (TLG) grown on copper by CVD displays better sensitivity due to the better thickness uniformity of the film and that carbon paste provides good contact for the measurements. Along with high sensitivity, TLG on PP shows not only the best response but also better transparency, mechanical stability, and washability compared to SEG. Temperature-dependent Raman analysis reveals that the temperature has no significant effect on the peak frequency of PP and expected effect on graphene in the demonstrated temperature range. The presented results demonstrate that these flexible, lightweight temperature sensors based on TLG with a negative TCR can be easily integrated in fabrics.
本文介绍了用于温度传感器的石墨烯涂层聚丙烯(PP)纺织纤维。这些温度传感器在30至45°C范围内呈现负电阻温度系数(TCR),具有良好的灵敏度和可靠性,并且可以在低至1V的电压下工作。对通过化学气相沉积(CVD)和石墨剪切剥离(SEG)制备的不同类型石墨烯的温度对电阻的瞬态响应分析表明,通过CVD在铜上生长的三层石墨烯(TLG)由于膜的厚度均匀性更好而表现出更好的灵敏度,并且碳糊为测量提供了良好的接触。与SEG相比,PP上的TLG除了具有高灵敏度外,不仅显示出最佳响应,还具有更好的透明度、机械稳定性和可洗性。温度相关的拉曼分析表明,在所示温度范围内,温度对PP的峰值频率没有显著影响,而对石墨烯有预期影响。所呈现的结果表明,这些基于具有负TCR的TLG的柔性、轻质温度传感器可以很容易地集成到织物中。