Advances in Flexible Metallic Transparent Electrodes
Достижения в области гибких металлических прозрачных электродов
2022-02-23
SCID: 54.1/bdfu4jqh
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flexible transparent electrodesindium tin oxide alternativesmetal nanowire networksmetallic nanomaterialstransparent conductive materials
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Abstract (AI)
Transparent electrodes (TEs) are pivotal components in many modern devices such as solar cells, light-emitting diodes, touch screens, wearable electronic devices, smart windows, and transparent heaters. Recently, the high demand for flexibility and low cost in TEs requires a new class of transparent conductive materials (TCMs), serving as substitutes for the conventional indium tin oxide (ITO). So far, ITO has been the most used TCM despite its brittleness and high cost. Among the different emerging alternative materials to ITO, metallic nanomaterials have received much interest due to their remarkable optical-electrical properties, low cost, ease of manufacturing, flexibility, and widespread applicability. These involve metal grids, thin oxide/metal/oxide multilayers, metal nanowire percolating networks, or nanocomposites based on metallic nanostructures. In this review, a comparison between TCMs based on metallic nanomaterials and other TCM technologies is discussed. Next, the different types of metal-based TCMs developed so far and the fabrication technologies used are presented. Then, the challenges that these TCMs face toward integration in functional devices are discussed. Finally, the various fields in which metal-based TCMs have been successfully applied, as well as emerging and potential applications, are summarized.
Key Findings
1
Metal-based transparent conductive materials are compared with other transparent conductive material technologies, including their fabrication methods and integration challenges.
2
Metallic nanomaterial transparent conductive materials are promising alternatives to indium tin oxide because they combine optical-electrical performance, low cost, manufacturability, flexibility, and broad applicability.
3
The review covers metal grids, oxide/metal/oxide multilayers, metal nanowire percolating networks, and nanocomposites based on metallic nanostructures.
4
The review summarizes successful, emerging, and potential applications of metal-based transparent electrodes in solar cells, light-emitting diodes, touch screens, wearable electronics, smart windows, and transparent heaters.
Research Object
Metallic nanomaterial-based transparent conductive materials for flexible transparent electrodes
Research Subject
Optical-electrical properties, material architectures, fabrication technologies, integration challenges, and applications of metal-based transparent conductive materials as flexible low-cost alternatives to ITO
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2022-02-23
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