Department of Chemistry, Northwestern University, 2145 Sheridan Rd., Evanston, IL, 60208, USA.
International Institute for Nanotechnology, Northwestern University, 2145 Sheridan Road, Evanston, IL, 60208, USA.
Small. 2021 Jul;17(28):e2100662. doi: 10.1002/smll.202100662. Epub 2021 Jun 10.
The development of a massively parallel lithographic technique called electrochemical polymer pen lithography is reported. Pyramidal pen arrays, consisting of more than 10 000 hydrogel pens loaded with metal salts, are integrated into a three-electrode cell and used to locally reduce ions at each pen tip. This system enables high-throughput patterning of a variety of metallic inks (e.g., Ni , Pt , Ag ) on the nanometer to micrometer length scale. By incorporating a z-direction piezo actuator, the extension length and dwell time can be used to precisely define feature dimensions (210 to 10 µm in width, and up to 900 nm in height, thus far). Furthermore, by controlling the potential and precursor concentrations, more than one element can be simultaneously deposited, creating a new tool for the synthesis of alloy features, such as NiCo, which are relevant for catalysis. Importantly, this methodology enables fine control over feature size and composition in a single pattern, which may make it ultimately useful for rapid, high-throughput combinatorial screening of metallic features.
本文报道了一种名为电化学聚合物笔刻蚀的大规模并行光刻技术的发展。由超过 10000 个装有金属盐的水凝胶笔组成的金字塔形笔阵列被集成到三电极电池中,并用于在每个笔尖局部还原离子。该系统可在纳米到微米长度范围内对各种金属油墨(如 Ni、Pt、Ag 等)进行高通量图案化。通过引入 z 方向的压电致动器,可以精确控制特征尺寸的延伸长度和停留时间(迄今为止,宽度为 210 至 10 µm,高度最高可达 900 nm)。此外,通过控制电位和前体浓度,可以同时沉积多种元素,从而为合成具有催化作用的 Ni-Co 等合金特征提供一种新工具。重要的是,这种方法可以在单个图案中对特征尺寸和组成进行精细控制,这可能使其最终可用于金属特征的快速、高通量组合筛选。