Chen Jyun-Hao, Liu Yen-Ting, Hsieh Chia-Chun, Chou Yi-Cheng, Chen Chun-Hu
Department of Chemistry, National Sun Yat-sen University, Kaohsiung, Taiwan 80424.
Langmuir. 2024 Aug 13;40(34):18254-61. doi: 10.1021/acs.langmuir.4c02158.
Traditional screen printing is an easy approach commonly used for conductive pattern fabrication of electronics but lacks high resolution. Photolithography offers better resolution but is complex. Photosensitive silver pastes (PSP) combine the benefits of both but suffer from undercut issues, causing uneven etching, decreased interfacial adhesion, and thus poor resolutions. In this study, we explore the use of molecular precursors (i.e., silver oxalate) to replace metallic silver particles and enhance the depth of light penetration. Our findings demonstrate a successful solution to the undercut issue, achieving an undercut index of 1.0, indicating an undercut-free scenario and enabling higher resolutions in line and pattern formation. Additionally, our research confirms the feasibility of multilayer stacking of photosensitive pastes, achieving unprecedented aspect ratios in line patterns. By replacing 25% of micrometer silver powder with silver oxalate (PSP-25), we achieved optimal line widths as fine as 10 μm. The three-layer stack of PSP-25 reached a substantial aspect ratio with a height of 29.4 μm and an optimal fringe pattern resolution of 10 μm line width with a 15 μm aisle width. Utilization of silver oxalate was observed to slightly expand the line width, likely due to light scattering by the fine silver nanoparticles (∼40 nm) formed during the photodecomposition of silver oxalate.
传统丝网印刷是一种常用于电子器件导电图案制作的简便方法,但分辨率较低。光刻技术具有更好的分辨率,但操作复杂。光敏银浆(PSP)兼具两者的优点,但存在底切问题,导致蚀刻不均匀、界面附着力下降,进而分辨率较差。在本研究中,我们探索使用分子前驱体(即草酸银)来替代金属银颗粒,并提高光穿透深度。我们的研究结果证明了一种成功解决底切问题的方法,实现了底切指数为1.0,表明无底切情况,并在线条和图案形成中实现了更高的分辨率。此外,我们的研究证实了光敏浆料多层堆叠的可行性,在线条图案中实现了前所未有的纵横比。通过用草酸银替代25%的微米级银粉(PSP - 25),我们实现了低至10μm的最佳线宽。PSP - 25的三层堆叠达到了相当高的纵横比,高度为29.4μm,最佳条纹图案分辨率为线宽10μm、通道宽度15μm。观察到使用草酸银会使线宽略有增加,这可能是由于草酸银光分解过程中形成的细银纳米颗粒(约40nm)引起的光散射所致。