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Improved Thermal Oxidation Stability of Solution-Processable Silver Nanowire Transparent Electrode by Reduced Graphene Oxide
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- Title
- Improved Thermal Oxidation Stability of Solution-Processable Silver Nanowire Transparent Electrode by Reduced Graphene Oxide
- Issued Date
- 2012-12
- Citation
- Ahn, Yumi. (2012-12). Improved Thermal Oxidation Stability of Solution-Processable Silver Nanowire Transparent Electrode by Reduced Graphene Oxide. ACS Applied Materials & Interfaces, 4(12), 6410–6414. doi: 10.1021/am301913w
- Type
- Article
- Author Keywords
- silver nanowire ; reduced graphene oxide ; transparent electrode ; thermal oxidation stability ; organic solar cell
- Keywords
- ORGANIC SOLAR-CELLS ; DOPED INDIUM OXIDE ; EFFICIENT ; FILMS ; FIELD
- ISSN
- 1944-8244
- Abstract
-
Solution-processable silver nanowire-reduced graphene oxide (AgNW-rGO) hybrid transparent electrode was prepared in order to replace conventional ITO transparent electrode. AgNW-rGO hybrid transparent electrode exhibited high optical transmittance and low sheet resistance, which is comparable to ITO transparent electrode. In addition, it was found that AgNW-rGO hybrid transparent electrode exhibited highly enhanced thermal oxidation and chemical stabilities due to excellent gas-barrier property of rGO passivation layer onto AgNW film. Furthermore, the organic solar cells with AgNW-rGO hybrid transparent electrode showed good photovoltaic behavior as much as solar cells with AgNW transparent electrode. It is expected that AgNW-rGO hybrid transparent electrode can be used as a key component in various optoelectronic application such as display panels, touch screen panels, and solar cells. © 2012 American Chemical Society.
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- Publisher
- American Chemical Society
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