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A thermally-invariant, additively manufactured, high-power graphene resistor for flexible electronics

机译:不变热,增材制造的大功率石墨烯电阻器,用于柔性电子产品

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摘要

Solution processed two-dimensional (2D) layered materials and their integration with additive manufacturing techniques, such as ink-jet printing, is a facile approach for incorporating these exotic materials into device platforms for flexible electronics. In this work, graphene ink formulations are successfully utilized toward the design and fabrication of high-power resistive structures that are printed on both rigid and flexible substrates and have the potential to deliver close to 10 W of power. A near-flat, negative temperature coefficient of resistivity (TCR) is measured with an activation energy E a ~ 2.4 meV for electron hopping, which is 100×  lower compared to E a values for high TCR materials. The TCR and E a values are amongst the lowest reported for 2D layered material systems. The thermal-invariance of resistivity for such high-power graphene printed resistors is attractive for applications, for example to provide a stable heating source for flexible electronics over extreme thermal environments. The transport characteristics of the ink-jet printed features is modeled as a composite structure in order to explain the thermal response which appears to be mediated via defects in the sonicated graphite, and correlates well to inferences made from Raman spectroscopy and transmission electron microscopy analysis conducted on the printed graphene structures. In order to fabricate such functional structures with ink-jet printing, the active nozzle number, printing passes, and annealing conditions are shown to play an important role to determine line resolution, and also dictate the morphological and electronic transport characteristics of the printed graphene features.
机译:固溶处理的二维(2D)分层材料及其与增材制造技术(例如喷墨印刷)的集成是一种将这些奇异材料整合到柔性电子设备平台中的简便方法。在这项工作中,石墨烯油墨配方成功地用于设计和制造同时印刷在刚性和柔性基板上的高功率电阻结构,并有可能提供接近10 W的功率。通过电子跃变的活化能E a〜2.4 meV来测量接近平坦的负电阻率温度系数(TCR),该能量比高TCR材料的E a值低100倍。 TCR和E a值是2D分层材料系统中报告的最低值。这种大功率石墨烯印刷电阻器的电阻率热不变性对应用很有吸引力,例如在极端的热环境下为柔性电子设备提供稳定的加热源。将喷墨打印特征的传输特性建模为复合结构,以解释似乎是由超声石墨中的缺陷介导的热响应,并与拉曼光谱和透射电子显微镜分析得出的推论很好地相关在印刷的石墨烯结构上。为了用喷墨印刷来制造这种功能结构,显示出有效的喷嘴数量,印刷次数和退火条件对确定线分辨率起着重要作用,并且还决定了印刷的石墨烯特征的形态和电子传输特性。

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