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A New “Bones/Muscles” Strategy for Preparing Highly Conducting Single‐Walled Carbon‐Nanotube Films with Ultrahigh Transparency

Hongliang Zhang, Dacheng Wei, Yunqi Liu, Bin Wu, Liping Huang, Hongxia Xi, Jianyi Chen, Gui Yu, Hisashi Kajiura, Yongming Li

Open publisher page 14 citations

Abstract

Ultrahigh-transmittance conducting films (UHTCFs) of single-walled carbon-nanotubes (SWNTs) are prepared by combined direct-synthesis and solution-based methods. Perfect two-dimensional SWNT TCFs (P2DTCFs) act as “bones” and SWNT bundles as “muscles” that fill in the uncovered areas (see picture). The sheet resistance of the film reaches 625Ω sq−1 with a transparency of 94.7%

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What this paper is about

Ultrahigh-transmittance conducting films (UHTCFs) of single-walled carbon-nanotubes (SWNTs) are prepared by combined direct-synthesis and solution-based methods. Perfect two-dimensional SWNT TCFs (P2DTCFs) act as “bones” and SWNT bundles as “muscles” that fill in the uncovered areas (see picture). The sheet resistance of the film reaches 625Ω sq−1 with a transparency of 94.7%

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Available abstract

Ultrahigh-transmittance conducting films (UHTCFs) of single-walled carbon-nanotubes (SWNTs) are prepared by combined direct-synthesis and solution-based methods. Perfect two-dimensional SWNT TCFs (P2DTCFs) act as “bones” and SWNT bundles as “muscles” that fill in the uncovered areas (see picture). The sheet resistance of the film reaches 625Ω sq−1 with a transparency of 94.7%

Key concepts: Carbon nanotube, Materials science, Transparency (behavior), Transmittance, Sheet resistance, Optical transparency, Nanotechnology, Composite material

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