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Efficient coating of transparent and conductive carbon nanotube thin films on plastic substrates

机译:在塑料基材上高效地涂覆透明导电碳纳米管薄膜

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摘要

Optically transparent and electrically conductive single-walled carbon nanotube (SWNT) thin films were fabricated at room temperature using a dip-coating technique. The film transparency and sheet resistance can be easily tailored by controlling the number of coatings. Aminopropyltriethoxysilane (APTS) was used as an adhesion promoter and, together with surfactant Triton X-100, greatly improved the SWNTs coating. Only five coats were required to obtain a sheet resistance of 2.05 k Omega/square and film transparency of 84 % T. The dip-coated film after post-deposition treatment with nitric acid has a sheet resistance as low as 130 Omega/square at 69 % T. This technique is suitable for large-scale SWNT coating at room temperature and can be used on different types of substrates such as glass and plastics. This paper will discuss the role of the adhesion promoter and surfactant in the coating process.
机译:使用浸涂技术在室温下制备光学透明且导电的单壁碳纳米管(SWNT)薄膜。通过控制涂层数量,可以轻松调整膜的透明度和薄层电阻。氨丙基三乙氧基硅烷(APTS)用作粘合促进剂,并与表面活性剂Triton X-100一起极大地改善了SWNTs涂层。仅需五道涂层即可获得2.05 k Omega / square的薄层电阻和84%T的薄膜透明度。用硝酸进行后沉积处理后的浸涂薄膜在69时的薄层电阻低至130 Omega / square %T。此技术适用于室温下的大规模SWNT涂层,可用于不同类型的基底,例如玻璃和塑料。本文将讨论增粘剂和表面活性剂在涂层过程中的作用。

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