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Synthesis of carbon nanotubes by plasmaenhanced chemical vapor deposition in an atmospheric-pressure microwave torch

机译:在常压微波炬中通过等离子体化学气相沉积法合成碳纳米管

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There are many different techniques for the synthesis of carbon nanotubes (CNTs), and plasma technologies experience a significant competitor in thermal chemical vapor deposition (CVD) processes. A particular process is, therefore, selected according to the specific requirements of an application, which clearly differ for the development of composites as compared to nanoelectronics, field emission, displays, sensors, and the like. This paper discusses the method for the synthesis of CNTs using an atmospheric-pressure microwave (MW) torch. It was successfully applied in the fast deposition of multiwalled nanotubes (MWNTs) on a substrate without the necessity of any vacuum or heating equipment. Dense straight-standing nanotubes were prepared on Si substrates with and also without barrier SiO_x layer. Therefore, it was possible to produce CNTs directly on conductive Si and to use them as an electron-emitting electrode of the gas pressure sensor. The CNTs grown in MW torch were also used to create a gas sensor based on the changes of electrical resistance measured between two planar electrodes connected by the CNTs.
机译:碳纳米管(CNT)的合成有许多不同的技术,而等离子体技术在热化学气相沉积(CVD)工艺中具有重要的竞争者。因此,根据应用的特定要求来选择特定的过程,与纳米电子学,场发射,显示器,传感器等相比,对于复合材料的开发而言明显不同。本文讨论了使用大气压微波炬吹合成碳纳米管的方法。它已成功应用于多壁纳米管(MWNT)在基材上的快速沉积,而无需任何真空或加热设备。在具有和不具有阻挡SiO_x层的Si衬底上制备致密的直立式纳米管。因此,可以直接在导电Si上生产CNT,并将其用作气压传感器的电子发射电极。基于在由CNT连接的两个平面电极之间测得的电阻变化,在MW焊炬中生长的CNT也被用于创建气体传感器。

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