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首页> 外文期刊>Applied Surface Science >Laser digital patterning of finely-structured flexible copper electrodes using copper oxide nanoparticle ink produced by a scalable synthesis method
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Laser digital patterning of finely-structured flexible copper electrodes using copper oxide nanoparticle ink produced by a scalable synthesis method

机译:采用可伸缩合成法生产的氧化铜纳米粒子油墨的精密结构柔性铜电极的激光数字图案化

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摘要

We present a facile and simple method for synthesizing a large-scale, well-dispersed, and high-concentration CuOx nanoparticle (NP) ink. CuOx thin films with ultrafine surfaces were fabricated using the synthesized NP ink by spin coating, which cannot be achieved using commercial NPs. The CuOx NP thin films were subjected to a subsequent laser digital patterning process, yielding finely-structured Cu electrodes on various polymer substrates with the minimum resistivity of 10.5 mu Omega cm due to the laser-induced reductive sintering (LRS) phenomenon. Arbitrary Cu electrode patterns were directly generated on various flexible substrates under ambient conditions without any templating process. Cu-grid transparent conducting panels with a low sheet resistance (8.45 Omega sq(-1)) and high transmittance (87.4% at 550 nm) were prepared. Furthermore, the effect of the amount of polyvinylpyrrolidone, which was used as a dispersing and reducing agent in the NP ink, on the LRS phenomenon was analyzed in detail. Mechanical bending and twisting, cyclic bending, and tape pull tests confirmed the superior electromechanical stability of the Cu electrodes. The long-term oxidation resistance of the Cu electrodes under ambient conditions and the limiting temperature of oxidation resistance were also examined. Finally, a Cubased flexible transparent touchscreen panel was demonstrated as a possible application.
机译:我们介绍了一种合成大规模,分散的和高浓度Cuox纳米颗粒(NP)油墨的容易和简单的方法。使用旋涂使用合成的NP油墨制造具有超细表面的CuOx薄膜,其不能使用商业NPS实现。对Cux NP薄膜进行随后的激光数字图案化工艺,由于激光诱导的还原烧结(LRS)现象,在各种聚合物基板上产生精细结构的Cu电极。在没有任何模板过程的环境条件下,在各种柔性基板上直接在各种柔性基板上直接产生任意Cu电极图案。制备具有低薄层电阻(8.45ωSq(-1))和高透射率(550nm的87.4%)的Cu-栅格透明导电板。此外,详细分析了在LRS现象中用作在NP墨水中使用作为分散和还原剂的聚乙烯吡咯烷酮的效果。机械弯曲和扭转,循环弯曲和胶带拉动试验证实了Cu电极的卓越机电稳定性。还检查了环境条件下Cu电极的长期抗氧化性和抗氧化性的限制温度。最后,将Cubased Flexible透明触摸屏面板作为可能的应用。

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