Oh Y S, Lee J, Choi D Y, Lee H, Kang K, Yoo S, Park I, Sung H J
Department of Mechanical Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Korea.
School of Electrical Engineering, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon, 34141, Korea.
Sci Rep. 2020 Apr 22;10(1):6782. doi: 10.1038/s41598-020-63695-0.
Solution-processed metal grid transparent conductors with low sheet resistance, high optical transmittance and good mechanical flexibility have great potential for use in flexible optoelectronic devices. However, there are still remaining challenges to improve optoelectrical properties and electromechanical stability of the metallic structures due to random loose packings of nanoparticles and the existence of many pores. Here we introduce a selective multi-nanosoldering method to generate robust metallic layers on the thin metal grid structures (< a thickness of 200 nm), which are generated via self-pining assisted direct inking of silver ions. The selective multi-nanosoldering leads to lowering the sheet resistance of the metal grid transparent conductors, while keeping the optical transmittance constant. Also, it reinforces the electromechanical stability of flexible metal grid transparent conductors against a small bending radius or a repeated loading. Finally, organic light-emitting diodes based on the flexible metal grid transparent conductors are demonstrated. Our approach can open a new route to enhance the functionality of metallic structures fabricated using a variety of solution-processed metal patterning methods for next-generation optoelectronic and micro/nanoelectronic applications.
具有低表面电阻、高光学透过率和良好机械柔韧性的溶液处理金属网格透明导体在柔性光电器件中具有巨大的应用潜力。然而,由于纳米颗粒的随机松散堆积和大量孔隙的存在,提高金属结构的光电性能和机电稳定性仍然存在挑战。在此,我们引入一种选择性多纳米焊接方法,在通过银离子自钉扎辅助直接喷墨制备的薄金属网格结构(厚度小于200nm)上生成坚固的金属层。选择性多纳米焊接降低了金属网格透明导体的表面电阻,同时保持光学透过率不变。此外,它增强了柔性金属网格透明导体在小弯曲半径或反复加载下的机电稳定性。最后,展示了基于柔性金属网格透明导体的有机发光二极管。我们的方法可以为增强使用各种溶液处理金属图案化方法制造的金属结构的功能开辟一条新途径,并应用于下一代光电子和微/纳电子领域。