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碳纳米管透明导电薄膜的最新发展。

Recent Development of Carbon Nanotube Transparent Conductive Films.

机构信息

Centre for Nanoscale Science and Technology, School of Chemical and Physical Sciences, Flinders University , Bedford Park, South Australia, Australia 5042.

出版信息

Chem Rev. 2016 Nov 23;116(22):13413-13453. doi: 10.1021/acs.chemrev.6b00179. Epub 2016 Oct 5.

Abstract

Transparent conducting films (TCFs) are a critical component in many personal electronic devices. Transparent and conductive doped metal oxides are widely used in industry due to their excellent optoelectronic properties as well as the mature understanding of their production and handling. However, they are not compatible with future flexible electronics developments where large-scale production will likely involve roll-to-roll manufacturing. Recent studies have shown that carbon nanotubes provide unique chemical, physical, and optoelectronic properties, making them an important alternative to doped metal oxides. This Review provides a comprehensive analysis of carbon nanotube transparent conductive films covering detailed fabrication methods including patterning of the films, chemical doping effects, and hybridization with other materials. There is a focus on optoelectronic properties of the films and potential in applications such as photovoltaics, touch panels, liquid crystal displays, and organic light-emitting diodes in conjunction with a critical analysis of both the merits and shortcomings of carbon nanotube transparent conductive films.

摘要

透明导电薄膜(TCFs)是许多个人电子设备的关键组成部分。透明导电掺杂金属氧化物由于其优异的光电性能以及对其生产和处理的成熟理解,在工业中得到了广泛的应用。然而,它们与未来的柔性电子发展不兼容,大规模生产可能涉及到卷对卷制造。最近的研究表明,碳纳米管提供了独特的化学、物理和光电性能,使它们成为掺杂金属氧化物的重要替代品。本综述全面分析了碳纳米管透明导电薄膜,涵盖了详细的制备方法,包括薄膜的图案化、化学掺杂效应以及与其他材料的杂化。重点关注薄膜的光电性能及其在光伏、触摸面板、液晶显示器和有机发光二极管等应用中的潜力,并对碳纳米管透明导电薄膜的优缺点进行了批判性分析。

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