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Hollow fibers integrated with single walled carbon nanotubes: Bandgap modification and chemical sensing capability

机译:中空纤维与单壁碳纳米管集成:带隙修饰和化学感应能力

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摘要

In this work, we report on the integration between hollow-core optical fibers (HOF) and single walled carbon nanotubs (SWCNTs) for the development of novel opto-chemical sensors for volatile organic compounds (VOCs) detection. Here, sensing probes were obtained by coating and partially filling the termination of HOFs by multiple SWCNTs monolayers. The infiltration of SWCNTs inside the HOF holes has been accomplished by means of the Langmuir-Blodgett deposition technique. Reflectance and far field transmission characterizations have been carried out within the HOF bandwidth in order to study the influence of the carbon nanotubes on the HOF photonic bandgap. Finally the sensing capability of the proposed sensors has been proved by exposure to VOCs traces. Experimental results demonstrate the success of the SWCNTs partial filling within the HOF holes and the sensor capability to perform VOCs detection with a good sensitivity and fast response times.
机译:在这项工作中,我们报告了空心光纤(HOF)和单壁碳纳米管(SWCNT)之间的集成,以开发用于检测挥发性有机化合物(VOC)的新型光化学传感器。在这里,通过多个SWCNTs单层涂覆并部分填充HOF的末端来获得传感探针。已经通过Langmuir-Blodgett沉积技术完成了HOCNT孔内SWCNT的渗透。为了研究碳纳米管对HOF光子带隙的影响,已经在HOF带宽内进行了反射率和远场透射的表征。最后,通过暴露于VOC迹线证明了所提出传感器的传感能力。实验结果表明,将SWCNTs部分填充到HOF孔中是成功的,并且具有以良好的灵敏度和快速的响应时间执行VOC检测的传感器功能。

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