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Properties of CNTs coated by PEDOT:PSS films via spin-coating and electrophoretic deposition methods for flexible transparent electrodes

机译:柔性透明电极通过旋涂和电泳沉积方法被PEDOT:PSS膜涂覆的CNT的性能

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Hybrid-type transparent electrodes, which possess the characteristics desirable for flexible touch screen panels, were fabricated by coating PEDOT:PSS [poly (3, 4-ethylene-dioxythio-phene):poly (styrenesulfonate)] films on carbon nanotubes (CNTs) via either spin-coating or electrophoretic deposition (EPD). For all the samples including the CNTs and the hybrid electrodes (i.e., PEDOT:PSS-coated CNTs), surface morphologies and cross-sections, sheet resistances, and visible transmittances were characterized as functions of their preparation conditions. Also, to identify the flexible capabilities of the hybrid electrodes, the changes in their sheet resistances due to repetitive bending (up to 30,000 times) were measured and compared with the results measured for the CNTs. In the hybrid-type electrodes, the PEDOT:PSS particles filled up the voids between the tubes in the CNTs, thereby forming a conduction bridge for electron transfer and eventually decreasing the sheet resistance. Furthermore, the PEDOT:PSS layers induced physical gripping of the CNTs to enable them to adhere better to the underlying PET substrates, indicating that the hybrid electrodes were more desirable in flexibility than were the CNTs. (c) 2015 Elsevier B.V. All rights reserved.
机译:通过在碳纳米管(CNT)上涂覆PEDOT:PSS [聚(3,4-乙烯-二氧噻吩-苯基):聚(苯乙烯磺酸盐)]薄膜来制造具有柔性触摸屏面板所需特性的混合型透明电极。通过旋涂或电泳沉积(EPD)。对于包括CNT和混合电极(即PEDOT:PSS涂层的CNT)在内的所有样品,表面形貌和横截面,薄层电阻和可见光透射率均取决于其制备条件。同样,为了确定混合电极的柔性,测量了由于重复弯曲(最多30,000次)而导致的薄层电阻变化,并将其与CNT的测量结果进行了比较。在混合型电极中,PEDOT:PSS颗粒填充了CNT中管之间的空隙,从而形成了电子转移的传导桥,最终降低了薄层电阻。此外,PEDOT:PSS层诱导了CNT的物理夹持,使它们能够更好地粘附在下面的PET基材上,这表明,与CNT相比,混合电极在柔韧性方面更为理想。 (c)2015 Elsevier B.V.保留所有权利。

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