Inkjet printed fractal-connected electrodes with silver nanoparticle ink

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Abstract

The development of a simple and reliable method for nanoparticles-based ink in an aqueous solution is still a challenge for its inkjet printing application. Herein, we demonstrate the inkjet printing of fractal-aggregated silver (Ag) electrode lines on substrates. Spherical, monodisperse Ag nanoparticles have been synthesized using silver nitrate as a precursor, ethylene glycol as a reducing agent, and polyvinyl pyrrollidone as a capping agent. As-synthesized pure Ag nanoparticles were well dispersed in water-ethylene glycol mixture, which was directly used as an ink for inkjet printing. Using this ink, the Ag electrodes of fractal-connected lines were printed on Si/SiO 2, glass, and polymer substrates. The fractal-connected Ag lines were attributed to the diffusion-limited aggregation of Ag nanoparticles and the effect of annealing on conductivity was also examined. © 2012 American Chemical Society.

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Vaseem, M., Lee, K. M., Hong, A. R., & Hahn, Y. B. (2012). Inkjet printed fractal-connected electrodes with silver nanoparticle ink. ACS Applied Materials and Interfaces, 4(6), 3300–3307. https://doi.org/10.1021/am300689d

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