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Heating-Rate-Triggered Carbon-Nanotube-based 3-Dimensional Conducting Networks for a Highly Sensitive Noncontact Sensing Device

机译:用于高度敏感的非接触式传感装置的加热速率触发的基于碳纳米管的三维电导网络

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Recently, flexible and transparent conductive films (TCFs) are drawing more attention for their central role in future applications of flexible electronics. Here, we report the controllable fabrication of TCFs for moisture-sensing applications based on heating-rate-triggered, 3-dimensional porous conducting networks through drop casting lithography of single-walled carbon nanotube (SWCNT)/poly(3,4-ethylenedioxythiophene)-polystyrene sulfonate (PEDOT:PSS) ink. How ink formula and baking conditions influence the self-assembled microstructure of the TCFs is discussed. The sensor presents high-performance properties, including a reasonable sheet resistance (2.1?kohm/sq), a high visible-range transmittance (>69%, PET?=?90%), and good stability when subjected to cyclic loading (>1000 cycles, better than indium tin oxide film) during processing, when formulation parameters are well optimized (weight ratio of SWCNT to PEDOT:PSS: 1:0.5, SWCNT concentration: 0.3?mg/ml, and heating rate: 36?°C/minute). Moreover, the benefits of these kinds of TCFs were verified through a fully transparent, highly sensitive, rapid response, noncontact moisture-sensing device (5?×?5 sensing pixels).
机译:最近,柔性透明的导电膜(TCFS)在柔性电子产品的未来应用中,更加关注它们的核心作用。在这里,我们通过单壁碳纳米管(SWCNT)/聚(3,4-亚乙二醇苯甲酸苯烯烯)通过滴铸光刻来报告基于加热速率触发的三维多孔电导网络的湿度传感应用的TCF的可控制造 - 聚苯乙烯磺酸盐(PEDOT:PSS)油墨。讨论了油墨配方和烘焙状况如何影响TCFS的自组装微观结构。传感器呈现出高性能的性能,包括合理的薄层电阻(2.1?Kohm / Sq),高可见范围透射率(> 69%,PET?= 90%),并且当受到循环加载时良好的稳定性(>在加工过程中,1000个循环,比铟锡氧化膜更好,当配方参数很好地优化时(SWCNT的重量比为PEDOT:1:0.5,SWCNT浓度:0.3?Mg / ml,加热速度:36Ω·℃ /分钟)。此外,通过全透明,高度敏感,快速的响应,非接触式湿度传感装置(5?×5感测像素)来验证这些类型的TCF的益处。

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