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Integration of conductive reduced graphene oxide into microstructured optical fibres for optoelectronics applications

机译:将导电的还原氧化石墨烯整合到用于光电子应用的微结构光纤中

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摘要

Integration of conductive materials into optical fibres can largely expand functions of fibre devices including surface plasmon resonator/metamaterial, modulators/detectors, or biosensors. Some early attempts have been made to incorporate metals such as tin into fibres during the fibre drawing process. Due to the restricted range of materials that have compatible melting temperatures with that of silica glass, the methods to incorporate metals along the length of the fibres are very challenging. Moreover, metals are nontransparent with strong light absorption, which causes high fibre loss. This article demonstrates a novel but simple method for creating transparent conductive reduced graphene oxide film onto microstructured silica fibres for potential optoelectronic applications. The strongly confined evanescent field of the suspended core fibres with only 2 μW average power was creatively used to transform graphene oxide into reduced graphene oxide with negligible additional loss. Existence of reduced graphene oxide was confirmed by their characteristic Raman signals, shifting of their fluorescence peaks as well as largely decreased resistance of the bulk GO film after laser beam exposure.
机译:将导电材料集成到光纤中可以大大扩展光纤设备的功能,包括表面等离子体共振器/超材料,调制器/检测器或生物传感器。已经进行了一些早期的尝试,以在纤维拉伸过程中将诸如锡的金属掺入纤维中。由于具有与石英玻璃相容的熔融温度的有限的材料范围,沿纤维长度掺入金属的方法非常具有挑战性。此外,金属是不透明的,具有很强的光吸收能力,这会导致高纤维损耗。本文演示了一种新颖但简单的方法,可在微结构化的二氧化硅纤维上形成透明的导电性还原氧化石墨烯薄膜,以用于潜在的光电应用。悬浮芯纤维的强约束瞬逝场仅具有2μW的平均功率,被创造性地用于将氧化石墨烯转变为还原的氧化石墨烯,而产生的附加损耗可忽略不计。还原的氧化石墨烯的存在通过其特征性的拉曼信号,其荧光峰的移动以及激光束曝光后体GO膜的电阻大大降低而得到证实。

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