Department of Chemistry, State University of New York at Binghamton, Binghamton, New York 13902, United States.
Langmuir. 2022 May 10;38(18):5633-5644. doi: 10.1021/acs.langmuir.2c00221. Epub 2022 Apr 27.
There is an increasing need to reduce the silver content in silver-based inks or pastes and achieve low-temperature sintering for scalable and low-cost production of printed wearable electronics. This need depends on the ability to control the metal composition and the surface properties of the nanoinks. Alloying silver with copper provides a pathway for meeting the need in terms of cost reduction, but little is known about the composition controllability and the low-temperature sintering capability. We report herein a scalable wet chemical synthesis of bimetallic silver-copper alloy nanoinks with room temperature sintering properties. The bimetallic alloy nanoparticles with a controllable composition can be formulated as stable nanoinks. The nanoinks printed on paper substrates are shown to sinter under room temperature. In addition to composition dependence, the results reveal an intriguing dependence of sintering on humidity above the printed nanoink films. These findings are assessed based on theoretical simulation of the sintering processes via surface-mediated sintering and interparticle necking mechanisms in terms of nanoscale adsorption, adhesion and diffusion, and surface free energies. Implications of the findings for room temperature fabrication of wearable sensors are also discussed.
对于可扩展且低成本生产的印刷可穿戴电子产品,人们越来越需要减少基于银的油墨或糊剂中的银含量并实现低温烧结。这种需求取决于控制金属成分和纳米油墨表面性能的能力。银与铜的合金化提供了一条降低成本的途径,但对于成本降低的组成可控性和低温烧结能力知之甚少。本文报道了一种可扩展的室温烧结的双金属银-铜合金纳米油墨的湿化学合成方法。具有可控组成的双金属合金纳米颗粒可被配制成稳定的纳米油墨。在纸基材上印刷的纳米油墨在室温下烧结。除了组成依赖性之外,结果还揭示了在打印纳米油墨薄膜上方的湿度对烧结的有趣依赖性。这些发现是基于通过表面介导的烧结和颗粒间颈部形成机制在纳米尺度吸附、粘附和扩散以及表面自由能方面的烧结过程的理论模拟来评估的。还讨论了这些发现对可穿戴传感器室温制造的意义。