Liu Jih-Hsin, Huang Yao-Sheng
Department of Electrical Engineering, Tunghai University, Taichung 407, Taiwan.
Nanomaterials (Basel). 2023 Sep 5;13(18):2497. doi: 10.3390/nano13182497.
This study aims to exploit the distinctive properties of carbon nanotube materials, which are particularly pronounced at the microscopic scale, by deploying fabrication techniques that allow their features to be observed macroscopically. Specifically, we aim to create a semiconductor device that exhibits flexibility and the ability to modulate its electromagnetic wave absorption frequency by means of biasing. Initially, we fabricate a sheet of carbon nanotubes through a vacuum filtration process. Subsequently, phosphorus and boron elements are separately doped into the nanotube sheet, enabling it to embody the characteristics of a PN diode. Measurements indicate that, in addition to the fundamental diode's current-voltage relationship, the device also demonstrates intriguing transmission properties under the TEM mode of electromagnetic waves. It exhibits a frequency shift of approximately 2.3125 GHz for each volt of bias change. The final result is a lightweight and flexible carbon-based semiconductor microwave filter, which can conform to curved surfaces. This feat underscores the potential of such materials for innovative and effective electromagnetic wave manipulation.
本研究旨在通过采用能使碳纳米管材料特性在宏观上得以观察的制造技术,来利用其在微观尺度上尤为显著的独特性能。具体而言,我们旨在制造一种半导体器件,该器件具有柔韧性,并能通过偏置来调制其电磁波吸收频率。首先,我们通过真空过滤工艺制造出一片碳纳米管。随后,将磷元素和硼元素分别掺杂到纳米管片中,使其具备PN二极管的特性。测量结果表明,除了基本二极管的电流 - 电压关系外,该器件在电磁波的TEM模式下还展现出有趣的传输特性。每改变一伏特偏置,其频率偏移约2.3125吉赫兹。最终成果是一种轻质且柔韧的碳基半导体微波滤波器,它能够贴合曲面。这一成果凸显了此类材料在创新且有效地操纵电磁波方面的潜力。