Stretchable and Transparent Electrodes using Hybrid Structures of Graphene-Metal Nanotrough Networks with High Performances and Ultimate Uniformity

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Transparent electrodes that can maintain their electrical and optical properties stably against large mechanical deformations are essential in numerous applications of flexible and wearable electronics. In this paper, we report a comprehensive analysis of the electrical, optical, and mechanical properties of hybrid nanostructures based on graphene and metal nanotrough networks as stretchable and transparent electrodes. Compared to the single material of graphene or the nanotrough, the formation of this hybrid can improve the uniformity of sheet resistance significantly, that is, a very low sheet resistance (1 Omega/sq) with a standard deviation of less than +/-0.1 Omega/sq, high transparency (91% in the visible light regime), and superb stretchability (80% in tensile strain). The successful demonstration of skin-attachable, flexible, and transparent arrays of oxide semiconductor transistors fabricated using hybrid electrodes suggests substantial promise for the next generation of electronic devices.
Publisher
AMER CHEMICAL SOC
Issue Date
2014-11
Language
English
Article Type
Article
Keywords

SILVER NANOWIRE ELECTRODES; THIN-FILM TRANSISTORS; LARGE-AREA; CARBON NANOTUBES; LAYER GRAPHENE; SOLAR-CELLS; NANOSTRUCTURES; CONDUCTIVITY; PRESSURE; SHEETS

Citation

NANO LETTERS, v.14, no.11, pp.6322 - 6328

ISSN
1530-6984
DOI
10.1021/nl502755y
URI
http://hdl.handle.net/10203/201074
Appears in Collection
MS-Journal Papers(저널논문)
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