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Cellophane or Nanopaper: Which Is Better for the Substrates of Flexible Electronic Devices?

机译:玻璃纸或纳米纸:哪种柔性电子设备的基板更好?

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摘要

Flexible electronic devices have gained broad applications in electrical sensors, photoelectrical displays, and energy storage devices, which result in a great demand for flexible and degradable substrates. The substrates require excellent thermal aging resistance to maintain the stability of flexible electronic devices in long-term use. Cellulose films, including cellophane, cellulose nanofibril (CNF) nanopaper, and cellulose nanocrystal (CNC) nanopaper, can be used as the substrates for flexible electronic devices. However, cellulose films prepared by different building blocks could affect thermal aging stability and the life of flexible electronic devices. In this work, the effects of thermal aging (105 degrees C for 5 days) on surface groups, crystalline structures, surface morphology, and mechanical, optical, and thermal properties of cellulose films were studied. Through sputtering and screen printing, conductive lines and circuits were prepared on cellulose films. The effects of thermal aging on electrical stabilities of conductive lines and circuits on cellulose films were investigated. Compared with the sizes of building blocks and crystalline structures of cellulose films, surface groups of building blocks were more responsible for thermal aging stability of cellulose films. As the substrate of flexible electronic devices, cellophane with hydroxyl groups exhibited better thermal aging stability (optical and thermal stabilities and stretchability) than nanopaper with carboxyl groups and sulfate ester groups.
机译:灵活的电子设备在电传感器,光电显示器和储能器件中获得了广泛的应用,这导致对柔性和可降解基板的需求很大。基板需要优异的热老化抗性,以保持柔性电子器件的稳定性在长期使用中。纤维素膜,包括玻璃烷,纤维素纳米纤维(CNF)纳米膜和纤维素纳米晶体(CNC)纳米件,可用作柔性电子器件的基板。然而,由不同的构建块制备的纤维素薄膜可能影响热老化稳定性和柔性电子器件的寿命。在这项工作中,研究了热老化(105摄氏度5天)对表面基团,结晶结构,表面形态和机械,光学和机械,光学和热性能的影响。通过溅射和丝网印刷,在纤维素膜上制备导电线和电路。研究了热老化对纤维素膜的导电线路和电路电稳定性的影响。与纤维素膜的构建块和结晶结构的尺寸相比,建筑物的表面组更负责纤维素膜的热老化稳定性。作为柔性电子器件的基材,含有羟基的玻璃纸比纳米孔和硫酸盐酯基更好地表现出更好的热老化稳定性(光学和热稳定性和拉伸性)。

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