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Influence of the Thermomechanical Characteristics of Low-Density Polyethylene Substrates on the Thermoresistive Properties of Graphite Nanoplatelet Coatings

机译:低密度聚乙烯基材热机械特性对石墨纳米岩涂层热敏性能的影响

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Morphological, structural, and thermoresistive properties of films deposited on low-density polyethylene (LDPE) substrates are investigated for possible application in flexible electronics. Scanning and transmission electron microscopy analyses, and X-ray diffraction measurements show that the films consist of overlapped graphite nanoplatelets (GNP) each composed on average of 41 graphene layers. Differential scanning calorimetry and dynamic-mechanical-thermal analysis indicate that irreversible phase transitions and large variations of mechanical parameters in the polymer substrates can be avoided by limiting the temperature variations between ?40 and 40 °C. Electrical measurements performed in such temperature range reveal that the resistance of GNP films on LDPE substrates increases as a function of the temperature, unlike the behavior of graphite-based materials in which the temperature coefficient of resistance is negative. The explanation is given by the strong influence of the thermal expansion properties of the LDPE substrates on the thermo-resistive features of GNP coating films. The results show that, narrowing the temperature range from 20 to 40 °C, the GNP on LDPE samples can work as temperature sensors having linear temperature-resistance relationship, while keeping constant the temperature and applying mechanical strains in the 0–4.2 × 10?3 range, they can operate as strain gauges with a gauge factor of about 48.
机译:研究了沉积在低密度聚乙烯(LDPE)基材上的膜的形态学,结构和热性能,以施加在柔性电子器件中。扫描和透射电子显微镜分析和X射线衍射测量表明,薄膜由平均41石墨烯层组成的重叠石墨纳米孔(GNP)组成。差分扫描量热法和动态机械热分析表明,通过限制在40和40℃之间的温度变化,可以避免不可逆的相变和聚合物基板中的机械参数的大变化。在这种温度范围内进行的电测量表明,与温度耐料系数的基于石墨的材料相比,LDPE基板上的GNP膜对LDPE膜的电阻增加。通过LDPE衬底的热膨胀性能对GNP涂膜的热电阻特征的热膨胀性能的强烈影响进行了解释。结果表明,缩小20至40°C的温度范围,LDPE样品上的GNP可以作为具有线性耐温关系的温度传感器,同时保持温度恒定,在0-4.2×10中施加机械菌株。 3范围,它们可以作为应变仪,具有约48的表格系数。

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