JOURNAL ARTICLE

Graphene micromesh for transparent conductive films application 

Ryousuke IshikawaHiroki NishidaHiro FukushimaSho WatanabeSohei YamazakiGilgu OhNozomu Tsuboi

Year: 2019 Journal:   Advanced Materials Letters Vol: 10 (6)Pages: 417-420   Publisher: International Association of Advanced Materials

Abstract

In order to improve the properties of the graphene transparent conductive film, we developed a process of O2 plasma patterning graphene using a metal mesh as an etching mask. The CVD growth conditions of high-quality multilayer graphene samples consisting of 400 layers or more were found using Ni foil, and the R sheet = 3.4 ± 0.6 Ω/sq. was achieved. The best performance of graphene micromesh based transparent conductive films so far was R sheet = 22.2 Ω/sq. at T = 47.1 ± 1.9 %. According to theoretical calculations based on the combined resistance of the two-dimensional resistance lattice circuit, a combined resistance of 46.8 Ω can be realized at T = 90%.

Keywords:
Graphene Materials science Sheet resistance FOIL method Electrical conductor Optoelectronics Etching (microfabrication) Composite material Transparent conducting film Nanotechnology Layer (electronics)

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Citation History

Topics

Additive Manufacturing and 3D Printing Technologies
Physical Sciences →  Engineering →  Automotive Engineering

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