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Highly Thermal-Resilient AgNW Transparent Electrode and Optical Device on Thermomechanically Superstable Cellulose Nanorod-Reinforced Nanocomposites

机译:热机械可燃纤维素纳米棒型纳米复合材料高度热弹性AgNW透明电极和光学装置

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摘要

Transparent plastics coated with a nanonetwork of metal nanowires or carbon nanomaterials are promising future electrodes for large-area, lightweight, and flexible optoelectronic devices. However, plastics are generally thermal- dimensionally instable, meaning that they expand and shrink in response to temperature change. This behavior may severe the ultrathin nanonetwork of the conducting nanomaterials, resulting in reduced performance of the electrodes and resulting optoelectronic devices. Herein, an incredibly thermal-dimensionally stable (3.26-4.68 ppm K-1) transparent and flexible plastic substrate is presented that results in high thermal performance of the resulting silver nanowire (AgNW) electrode and smart optical device. The high thermal-dimensional stability is achieved through the generation of a hierarchical network of cellulose nanorods (a highly regarded biobased reinforcing material) in the plastic via a water-based process. The improved nanocomposite electrode exhibits good electro-optical performance (12.4-15.6 omega sq(-1) vs 84%); high flexibility; good mechanics even at 150 degrees C; and the capability to withstand repeated extreme heating and cooling at 150 and -196 degrees C, respectively. The findings of this study combined with those reported in the literature can show a pathway for further performance improvement of transparent electrodes for future advanced devices.
机译:涂有金属纳米线或碳纳米材料的纳米机构的透明塑料是用于大面积,轻质和柔性光电器件的未来电极。然而,塑料通常是热尺寸的不稳定的,这意味着它们响应于温度变化而扩张和缩小。这种行为可能严重导电纳米材料的超薄纳米型制品,导致电极的性能降低和所得到的光电器件。这里,提出了一种令人难以置信的热尺寸稳定(3.26-4.68ppm k-1)透明和柔性塑料基板,其导致所得的银纳米线(AgNW)电极和智能光学装置的高热性能。通过在塑料中通过基于水基方法产生高热尺寸稳定性来实现通过在塑料中的纤维素纳米棒(高度被升高的生物化增强材料)的层次进行实现。改进的纳米复合材料具有良好的电光性能(12.4-15.6ωSq(-1)Vs 84%);柔韧性高;即使在150摄氏度下也是好的力学;并且可以分别承受150和-196摄氏度的重复热量和冷却的能力。该研究的结果与文献中报道的那些相结合,可以显示出进一步性能改善未来先进设备的透明电极的途径。

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