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首页> 外文期刊>Nanoscale >Selective synthesis of large diameter, highly conductive and high density single-walled carbon nanotubes by a thiophene-assisted chemical vapor deposition method on transparent substrates
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Selective synthesis of large diameter, highly conductive and high density single-walled carbon nanotubes by a thiophene-assisted chemical vapor deposition method on transparent substrates

机译:选择性合成大直径、高度导电和高密度单壁碳纳米管thiophene-assisted化学气透明基板上的沉积方法

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摘要

Selective synthesis of single-walled carbon nanotubes (SWNTs) with controlled properties is an important research topic for SWNT studies. Here we report a thiophene-assisted chemical vapor deposition (CVD) method to directly grow highly conductive SWNT thin films on substrates, including transparent ones. By adding low concentration thiophene into the carbon feedstock (ethanol), the as-prepared carbon nanotubes demonstrate an obvious up-shift in the diameter distribution while the single-walled structure is still retained. In the proposed mechanism, the change in the diameter is sourced from the increase in the carbon yield induced by the sulfur-containing compound. Such SWNTs are found to possess high conductivity with 95% SWNTs demonstrating on/off ratios lower than 100 in transistors. More importantly, it is further demonstrated that this method can be used to directly synthesize dense SWNT networks on transparent substrates which can be utilized as transparent conductive films (TCFs) with very high transparency. Such TCFs can be applied to fabricate a light modulating window as a proof-of-concept. The present work provides important insights into the growth mechanism of SWNTs and great potential for the preparation of TCFs with high scalability, easy operation and low cost.
机译:选择性合成单壁碳纳米管(纳米)控制的属性碳纳米管的一个重要研究课题研究。这里我们报告一个thiophene-assisted化学汽相淀积(CVD)方法直接生长高导电碳纳米薄膜在基板上,包括透明的。噻吩浓度的碳原料(乙醇)和碳纳米管展示一个明显up-shift直径分布在单壁结构仍然保留。直径的变化是来自增加碳引起的收益率含硫化合物。拥有高导电性纳米管为95%显示开/关比率低于100年晶体管。证明这种方法可以使用直接合成碳纳米管密集网络透明基板,可以利用透明导电薄膜(tcf)非常高透明度。作为一个制造光调制窗口概念验证。生长机理的重要见解纳米管的制备和巨大的潜力tcf高可伸缩性、操作方便低成本。

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