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Sensitive Real-Time Monitoring of Refractive Indexes Using a Novel Graphene-Based Optical Sensor

机译:使用基于石墨烯的新型光学传感器实时实时监测折射率

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摘要

Based on the polarization-sensitive absorption of graphene under conditions of total internal reflection, a novel optical sensor combining graphene and a microfluidic structure was constructed to achieve the sensitive real-time monitoring of refractive indexes. The atomic thickness and strong broadband absorption of graphene cause it to exhibit very different reflectivity for transverse electric and transverse magnetic modes in the context of a total internal reflection structure, which is sensitive to the media in contact with the graphene. A graphene refractive index sensor can quickly and sensitively monitor changes in the local refractive index with a fast response time and broad dynamic range. These results indicate that graphene, used in a simple and efficient total internal reflection structure and combined with microfluidic techniques, is an ideal material for fabricating refractive index sensors and biosensor devices, which are in high demand.
机译:基于全内反射条件下石墨烯的偏振敏感吸收,构造了一种结合了石墨烯和微流体结构的新型光学传感器,以实现对折射率的灵敏实时监测。石墨烯的原子厚度和强宽带吸收性使其在全内反射结构的情况下对横向电磁模式和横向磁模式表现出截然不同的反射率,该结构对与石墨烯接触的介质敏感。石墨烯折射率传感器可以快速,灵敏地以快速响应时间和宽动态范围监视局部折射率的变化。这些结果表明,用于简单高效的全内反射结构并与微流体技术相结合的石墨烯是制造需求量很大的折射率传感器和生物传感器设备的理想材料。

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