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Terahertz time-domain spectroscopy as a novel metrology tool for liquid-phase exfoliated few-layer graphene

机译:Terahertz时域光谱作为用于液相剥离的新型计量工具,用于较少层石墨烯

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摘要

Few-layer graphene (FLG) platelets exfoliated directly from graphite are finding a wide range of potential applications, including composites and printed electronics. However, characterisation of the FLG material following incorporation into polymers, including the quality of the dispersion, remains a challenge. Here, we present the use of terahertz time-domain spectroscopy as a potential solution to this challenge which could form the basis of a rapid characterisation tool. The THz refractive index was found to be highly sensitive to the loading of FLG, opening the route to mapping local FLG concentration within a polymer composite sample. By fitting the measured permittivity of the flakes to the Drude-Smith model of conductivity, we also show that the carrier concentrations of these materials are comparable to un-doped chemical vapour deposition produced materials. The ability to measure electronic properties of FLG following processing is important to ensure that defects have not been introduced or chemical functionalisation removed during processing.
机译:直接从石墨直接剥离的几层石墨烯(FLG)血小板正在寻找各种潜在的应用,包括复合材料和印刷电子设备。然而,在掺入聚合物之后的FLG材料的表征,包括分散的质量,仍然是一个挑战。在这里,我们介绍了将Terahertz时域光谱的使用作为这种挑战的潜在解决方案,这可以构成快速表征工具的基础。发现THz折射率对FLG的负载非常敏感,打开以在聚合物复合样品中绘制局部FLG浓度的途径。通过将薄片的测量介电常数拟合到Drude-Smith导电性模型,我们还表明这些材料的载流子浓度与未掺杂的化学气相沉积产生的材料相当。测量FLG后处理后的电子性质的能力对于确保在加工过程中尚未引入缺陷或消除的化学官能化。

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