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Eco-friendly all-carbon paper electronics fabricated by a solvent-free drawing method

机译:通过无溶剂拉伸法制造的环保全碳纸电子产品

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摘要

Here we report the fabrication of high-performance all-carbon temperature and infrared (IR) sensors with a solvent-free multiwalled carbon nanotube (MWCNT) trace as the sensing element and commercial graphite pencil trace as the electrical contact on recyclable and biodegradable cellulose filter paper without using any toxic materials or complex procedures. The temperature sensor shows a large negative temperature coefficient of resistance (TCR) in the range of -3100 ppm K-1 to -4900 ppm K-1, which is comparable to available commercial temperature sensors, and an activation energy of 34.85 meV. The IR sensor shows a high responsivity of 58.5 V W-1, which is greater than reported IR sensors with similar dimensions. A detailed study of the conduction mechanism in MWCNTs with temperature and the photo response with IR illumination was done and it was found that the conduction is due to thermally assisted hopping in band tails and the photo response is bolometric in nature. The successful fabrication of these sensors on cellulose filter paper with a comparable performance to existing components indicates that it is possible to fabricate high-performance electronics using low-cost, eco-friendly materials without the need for expensive clean-room processing techniques or harmful chemicals.
机译:在这里,我们报告了高性能全碳温度和红外(IR)传感器的制造,其中无溶剂的多壁碳纳米管(MWCNT)迹线为传感元件,商用石墨铅笔迹线为可回收和可生物降解的纤维素过滤器上的电触点无需使用任何有毒材料或复杂程序的纸张。该温度传感器在-3100 ppm K-1至-4900 ppm K-1的范围内显示出较大的负电阻温度系数(TCR),与可用的商用温度传感器相当,其激活能为34.85 meV。红外传感器显示出58.5 V W-1的高响应度,这比报道的尺寸相似的红外传感器要高。详细研究了碳纳米管在温度下的传导机理以及红外照明下的光响应,发现该传导是由于带尾中的热辅助跳跃引起的,并且光响应本质上是辐射热分析。这些传感器在纤维素滤纸上的成功制造具有与现有组件相当的性能,这表明可以使用低成本,环保的材料制造高性能电子设备,而无需昂贵的洁净室处理技术或有害化学物质。

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