Departamento de Química-Física, Universidad de Santiago de Compostela, 15782 Santiago de Compostela, Spain.
J Am Chem Soc. 2010 Mar 24;132(11):3751-5. doi: 10.1021/ja910572b.
In this work we show that the electrical conductivity and thermoelectric power of random networks of carbon nanotube (CNT) films can be tuned by means of a layer-by-layer polymer coating technique of the individual nanotubes. Using this approach, nanotubes dispersed in water are coated before the formation of the film, achieving a control of the transport properties independent of the substrate. Below a certain temperature the conductivity departs from the ohmic behavior and enters a tunneling regime with an energy barrier for electron transport determined by the width of the polymer layer. The excellent control over the conductivity and the possibility of using the polymer coating as a gate dielectric material could be an important step for the development of an easy and scalable approach for the fabrication of CNT-based thin film transistors.
在这项工作中,我们展示了通过逐层聚合物涂层技术可以调节碳纳米管(CNT)薄膜的随机网络的电导率和热电功率。使用这种方法,在形成薄膜之前对分散在水中的纳米管进行涂层,实现了对独立于基底的传输特性的控制。在某一温度以下,电导率偏离欧姆行为,进入电子输运的隧道状态,其能量势垒由聚合物层的宽度决定。对电导率的出色控制以及将聚合物涂层用作栅极介电材料的可能性可能是开发基于 CNT 的薄膜晶体管的简单且可扩展的制造方法的重要步骤。