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Transparent Conducting Films Based on Carbon Nanotubes: Rational Design toward the Theoretical Limit

期刊

ADVANCED SCIENCE
卷 9, 期 24, 页码 -

出版社

WILEY
DOI: 10.1002/advs.202201673

关键词

carbon nanotubes; chemical vapor deposition (CVD); optoelectronics; transparent conductors

资金

  1. Russian Science Foundation [21-19-00226]
  2. President of RF [HIII-1330.2022.1.3]
  3. Russian Science Foundation [21-19-00226] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

This article analyzes the latest research achievements in the optoelectronic performance of transparent conducting films (TCFs) based on single-walled carbon nanotubes (SWCNTs), and briefly reviews various methods for evaluating the performance of transparent electrodes. The article also describes a roadmap for further research and development of transparent conductors using rational design.
Electrically conductive thin-film materials possessing high transparency are essential components for many optoelectronic devices. The advancement in the transparent conductor applications requires a replacement of indium tin oxide (ITO), one of the key materials in electronics. ITO and other transparent conductive metal oxides have several drawbacks, including poor flexibility, high refractive index and haze, limited chemical stability, and depleted raw material supply. Single-walled carbon nanotubes (SWCNTs) are a promising alternative for transparent conducting films (TCFs) because of their unique and excellent chemical and physical properties. Here, the latest achievements in the optoelectronic performance of TCFs based on SWCNTs are analyzed. Various approaches to evaluate the performance of transparent electrodes are briefly reviewed. A roadmap for further research and development of the transparent conductors using rational design, which breaks the deadlock for obtaining the TCFs with a performance close to the theoretical limit, is also described.

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