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All-solution-processed foldable transparent electrodes of Ag nanowire mesh and metal matrix films for flexible electronics

机译:Ag纳米线网和金属基质薄膜的全溶液处理可折叠透明电极,用于柔性电子

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摘要

In this study, we developed foldable transparent electrodes composed of Ag nanowire (AgNW) networks welded by Ag nanoparticles (AgNPs) reduced from commercial Ag ink. All the processes used were solution-based. Using the Meyer rod method, uniform AgNW networks were roll-to-roll coated on large-area polymer substrates, and the spin-coated AgNPs firmly welded the AgNWs together at junctions and to substrates. The hybrid films consisting of AgNWs and the Ag film matrix exhibited higher electrical conductivity (5.0-7.3 × 10~5 S/m) than and equivalent transparency (90-95%) to the AgNW networks. Furthermore, the hybrid films showed significantly better bending stability than AgNW networks. During cyclic bending tests to 10,000 cycles at 5 mm bending radius and even when almost folded with r_b of 1 mm, the resistivity changes were negligible because AgNWs were tightly held and adhered to the substrate by Ag films covering wires, thereby hindering fracturing of AgNWs under tension. Because the films were fabricated at a low temperature, there was no oxidation on the surfaces of the films. Hence, flexible organic light-emitting diodes (f-OLEDs) were successfully fabricated on polyethylene terephtha-lates (PET) coated with the hybrid films. The f-OLED in the bent state was comparable to that in the fiat state, validating the potential applications of these transparent hybrid films as electrodes in various flexible electronics.
机译:在这项研究中,我们开发了可折叠的透明电极,该电极由Ag纳米线(AgNW)网络组成,该网络由从商用Ag墨水中还原而来的Ag纳米颗粒(AgNP)焊接而成。所有使用的过程都是基于解决方案的。使用Meyer棒法,将均匀的AgNW网络卷对卷地涂覆在大面积聚合物基板上,然后将旋涂的AgNP牢固地将AgNW焊接在接合处并与基板焊接在一起。由AgNW和Ag薄膜基质组成的杂化薄膜比AgNW网络具有更高的电导率(5.0-7.3×10〜5 S / m)和等效的透明度(90-95%)。此外,杂化膜显示出比AgNW网络更好的弯曲稳定性。在弯曲半径为5 mm的情况下进行10,000次循环弯曲测试期间,即使以1 mm的r_b几乎折叠时,电阻率的变化也可以忽略不计,因为AgNW被覆盖导线的Ag膜紧紧​​固定并粘附在基板上,从而阻碍了AgNW的破裂张力。因为薄膜是在低温下制造的,所以薄膜表面没有氧化。因此,在涂有杂化膜的聚对苯二甲酸乙二醇酯(PET)上成功地制造了柔性有机发光二极管(f-OLED)。处于弯曲状态的f-OLED与处于平坦状态的f-OLED相当,这验证了这些透明混合膜作为各种柔性电子设备中的电极的潜在应用。

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