Mi Xiaoqian, Liu Lixue, Yang Shujia, Wu Peiqi, Zhan Weiqing, Ji Xinyi, Liang Jiajie
School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tianjin, China.
Key Laboratory of Functional Polymer Materials of Ministry of Education, College of Chemistry, Nankai University, Tianjin, China.
Nat Commun. 2025 Mar 16;16(1):2590. doi: 10.1038/s41467-025-57959-4.
Functional nanowire ink formulations require elaborate control over their composition, rheological properties, and fluidic properties to optimize their printing processes. They also require harsh post-fabrication treatments to maximize the performance of the resulting printed flexible devices, making it challenging to uniformly deposit nanowire-based architectures and ensure device reproducibility and scalability. Here, we propose a strategy for developing silver nanowire (AgNW) ink formulations, where hyperbranched molecules (HPMs) are employed as both dispersant and stabilizer for nanowires. The three-dimensional architecture with functional groups on the periphery of HPMs enables the preparation of thixotropic HPMs-AgNW inks with solid contents of up to 20 wt.% in both aqueous and organic solvents using a low amount of HPMs (AgNW and HPMs weight ratio = 1:0.001). The HPMs-AgNW inks can be printed into patterns with a resolution of 20 μm on various flexible substrates without needing harsh post-treatments. We obtain bar-coated transparent electrodes (sheet resistance of 17.1 Ω sq at 94.7% transmittance), slot-die-coated flexible conductive patterns, screen-printed conductive lines (conductivity exceeding 6.2 × 10 S cm), and 3D printed stretchable wires. Importantly, this HPMs-stabilized formulation strategy is general for various functional nanowires, enabling the integration of a diverse set of nanowire-based wearable electronic systems.
功能性纳米线油墨配方需要对其成分、流变特性和流体特性进行精细控制,以优化其印刷工艺。它们还需要进行苛刻的后处理,以最大限度地提高所得印刷柔性器件的性能,这使得均匀沉积基于纳米线的结构并确保器件的可重复性和可扩展性具有挑战性。在此,我们提出了一种开发银纳米线(AgNW)油墨配方的策略,其中超支化分子(HPMs)被用作纳米线的分散剂和稳定剂。HPMs外围带有官能团的三维结构使得能够使用少量的HPMs(AgNW与HPMs的重量比 = 1:0.001)在水性和有机溶剂中制备固含量高达20 wt.%的触变HPMs-AgNW油墨。HPMs-AgNW油墨无需苛刻的后处理即可在各种柔性基板上印刷成分辨率为20 μm的图案。我们获得了条形涂布的透明电极(在94.7%的透光率下方块电阻为17.1 Ω/sq)、狭缝模头涂布的柔性导电图案、丝网印刷的导线(电导率超过6.2×10 S/cm)以及3D打印的可拉伸导线。重要的是,这种HPMs稳定的配方策略对于各种功能性纳米线具有通用性,能够集成多种基于纳米线的可穿戴电子系统。