High-Resolution, High-Aspect Ratio Conductive Wires Embedded in Plastic Substrates

A novel method is presented to fabricate high-resolution, high-aspect ratio metal wires embedded in a plastic substrate for flexible electronics applications. In a sequential process, high-resolution channels connected to low-resolution reservoirs are first created in a thermosetting polymer by impr...

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Veröffentlicht in:ACS applied materials & interfaces 2015-01, Vol.7 (3), p.1841-1847
Hauptverfasser: Mahajan, Ankit, Hyun, Woo Jin, Walker, S. Brett, Lewis, Jennifer A, Francis, Lorraine F, Frisbie, C. Daniel
Format: Artikel
Sprache:eng
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Zusammenfassung:A novel method is presented to fabricate high-resolution, high-aspect ratio metal wires embedded in a plastic substrate for flexible electronics applications. In a sequential process, high-resolution channels connected to low-resolution reservoirs are first created in a thermosetting polymer by imprint lithography. A reactive Ag ink is then inkjet-printed into the reservoirs and wicked into the channels by capillary forces. These features serve as a seed layer for copper deposition inside the channels via electroless plating. Highly conductive wires (>50% bulk metal) with minimum line width and spacing of 2 and 4 μm, respectively, and an aspect ratio of 0.6 are obtained. The embedded wires exhibit good mechanical flexibility, with minimal degradation in electrical performance after thousands of bending cycles.
ISSN:1944-8244
1944-8252
DOI:10.1021/am507539a