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Conducting Helical Structures from Celery Decorated with a Metallic Conjugated Polymer Give Resonances in the Terahertz Range

机译:用金属共轭聚合物装饰的芹菜的螺旋结构传导到太赫兹范围内的共振。

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摘要

A method to decorate cellulose-based helices retrieved from the plant celery with a conductive polymer is proposed. Using a layer-by-layer method, the decoration of the polyanionic conducting polymer poly(4-(2,3-dihydrothieno [3,4-b]-[1,4]dioxin-2-yl-methoxy)-1-butanesulfonic acid (PEDOT-S) is enhanced after coating the negatively charged cellulose helix with a polycationic polyethyleneimine. Microscopy techniques and two-point probe are used to image the structure and measure the conductivity of the helix. Analysis of the optical and electrical properties of the coated helix in the terahertz (THz) frequency range shows a resonance close to 1 THz and a broad shoulder that extends to 3.5 THz, consistent with electromagnetic models. Moreover, as helical antennas, it is shown that both axial and normal modes are present, which are correlated to the orientation and antenna electrical lengths of the coated helices. This work opens the possibility of designing tunable terahertz antennas through simple control of their dimensions and orientation.
机译:提出了一种用导电聚合物修饰从植物芹菜中回收的纤维素基螺旋的方法。使用逐层方法,装饰聚阴离子导电聚合物聚(4-(2,3-二氢噻吩并[3,4-b]-[1,4]二恶英-2-基-甲氧基)-1-用聚阳离子聚乙烯亚胺涂覆带负电荷的纤维素螺旋线后,丁烷磺酸(PEDOT-S)得到增强,使用显微镜技术和两点探针成像结构并测量螺旋线的电导率。太赫兹(THz)频率范围内的涂层螺旋线显示出接近1 THz的共振,并延伸到3.5 THz的宽肩,这与电磁模型一致,此外,作为螺旋天线,它还显示了轴向模式和法向模式,这与涂层螺旋的方向和天线电长度相关,这项工作为通过简单控制其尺寸和方向来设计可调谐太赫兹天线提供了可能性。

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