基于碳纳米管的检测系统x射线源

H. Choi, J. Kim
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引用次数: 0

摘要

碳纳米管(即cnt)是管状碳分子,其特性使其在极小尺度的电子和机械应用中具有潜在的用途。因此,碳纳米管被广泛应用于场发射显示器(FED)、纳米级传感器、真空电子器件等领域。在本研究中,碳纳米管被应用于x射线发射器。采用热CVD法在金属基体上生长CNTs,生长出的CNTs长度约为30~50 um。在具有三极管结构(即阴极作为碳纳米管发射极,栅极和阳极)的x射线管中测试了生长的碳纳米管发射极的电学性能。利用Opera 3D代码还研究了电子束聚焦特性,从而优化了三极管中各个电极的位置,以获得最佳的x射线产生。本研究获得了典型的x射线图像,并对所制备的x射线三极管进行了详细的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CNT based X-ray source for inspection system
Carbon nanotubes (i.e., CNTs) are tubular carbon molecules with properties that make them potentially useful in extremely small scale electronic and mechanical applications. Because of this, CNTs are widely used in many parts such as, field emission display (FED), nanoscale sensors, vacuum electronic devices, and so on. In this study, CNTs were applied for an X-ray emitter. CNTs were grown on the metal substrate by thermal CVD method and the length of the grown CNTs was about 30~50 um. The electrical properties of the grown CNT emitter were tested in an X-ray tube, which has triode structure (i.e., a cathode as CNT emitter, a grid, and an anode). Electron beam focusing characteristics were also studied by using the Opera 3D code, therefore, positions of individual electrodes in the triode were optimized for the best X-ray generation. Typical X-ray images were obtained in this study and the detailed descriptions of the manufactured X-ray triode were discussed.
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