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Emerging Transparent Electrodes Based on Thin Films of Carbon Nanotubes, Graphene, and Metallic Nanostructures

Advanced Materials · 2011 · Vol. 23(13) · pp. 1482–1513
David S. HechtLiangbing HuGlen C. Irvin

Abstract

Transparent electrodes are a necessary component in many modern devices such as touch screens, LCDs, OLEDs, and solar cells, all of which are growing in demand. Traditionally, this role has been well served by doped metal oxides, the most common of which is indium tin oxide, or ITO. Recently, advances in nano-materials research have opened the door for other transparent conductive materials, each with unique properties. These include CNTs, graphene, metal nanowires, and printable metal grids. This review will explore the materials properties of transparent conductors, covering traditional metal oxides and conductive polymers initially, but with a focus on current developments in nano-material coatings. Electronic, optical, and mechanical properties of each material will be discussed, as well as suitability for various applications.

Advanced Sensor and Energy Harvesting MaterialsNanomaterials and Printing TechnologiesZnO doping and propertiesMaterials scienceGrapheneTransparent conducting filmNanotechnologyIndium tin oxideCarbon nanotubeElectrical conductorConductive polymerNanowireElectrode

MeSH terms

ElectrodesGraphiteNanotubes, CarbonMetal Nanoparticles
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