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Preparation of light-transmissive conductive film by free arc dispersed carbon nanotubes and thermos compression bonding
Carbon Letters ( IF 5.5 ) Pub Date : 2020-03-31 , DOI: 10.1007/s42823-020-00137-x
Shaolong Li , Kai Wang , Meng Feng , Huilu Yang , Xingyang Liu , Yan He , Chuanqi Zhang , Jinyu Wang , Jinfeng Fu

To investigate the effect of gas dispersing carbon nanotubes (CNTs) and hot pressing method on the transparency and the conductivity of thin films, the free arc was used to disperse the CNTs in a high dispersion rate, and the dispersed CNTs were rapidly pressed into the surface of the PET film by hot pressing to obtain electrical conductivity. The relationship between the light transmission and sheet resistance of the film was studied by changing the deposition time and the presence or absence of electrostatic adsorption. It was found that the CNTs modified film still retains good electrical conductivity (sheet resistance up to 6 × 104 Ω, light transmittance 69%) through the cleaning of surfactants and ultrasonic waves, which proves that hot pressing is a simple physical method to achieve effective combination of CNTs and films.



中文翻译:

游离电弧分散碳纳米管与热压接法制备透光导电膜

为了研究气体分散碳纳米管(CNTs)和热压方法对薄膜透明性和导电性的影响,使用自由电弧以高分散速率分散CNT,并将分散的CNT快速压入碳纳米管中。通过热压在PET膜的表面上获得导电性。通过改变沉积时间和是否存在静电吸附来研究膜的透光率和薄膜电阻之间的关系。发现碳纳米管改性膜仍保持良好的导电性(薄层电阻高达6×10 4 Ω,透光率69%),这是通过清洗表面活性剂和超声波来完成的,这证明了热压是实现CNT与膜有效结合的简单物理方法。

更新日期:2020-03-31
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