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Study of the modification of the hydrophobic properties of thin carbon films via thermo-assisted Tip-Enhanced Raman Scattering method

机译:通过热辅助尖端增强拉曼散射法改变薄碳膜疏水性能的研究

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The chemical composition and optical properties of amorphous carbon films of various thicknesses in the range from 1 to 100 nm on a series of optical fibers were characterized by using far-and near-field Raman spectroscopy. For the first time the presence of a hysteresis of the resistance of a thin carbon film was observed in ambient environment. The Raman spectrum of carbon film in the region of 1000-2000 cm~(-1) was fitted and well reproduced using seven individual components that were assigned to the oxygen- and hydrogen-containing functional groups defect graphene. Besides that, the thermo-assisted Tip-Enhanced Raman Scattering (TERS) method provided the evidence of the formation of a water molecule in carbon coatings. We propose that during the heat treatment the fraction of functional groups on the initial film structures changes in comparison with room temperature. Such structural modifications of carbon film can lead to a violation of hydrophobic properties of carbon coatings due to temperature change. These findings may provide opportunities for technical design of carbon-based devices.
机译:通过使用远处和近场拉曼光谱,特征在于1至100nm的各种厚度的化学成分和光学性质的各种厚度在1至100nm的范围内。首次在环境环境中观察到薄碳膜抗性的滞后存在的存在。拟合1000-2000cm〜(-1)区域的碳膜的拉曼光谱,并使用7个单独的组分分配给含氧和氢官能团的缺陷石墨烯。除此之外,热辅助尖端增强拉曼散射(TERS)方法提供了碳涂层中水分子形成的证据。我们提出,在热处理期间,初始膜结构上的官能团的分数与室温相比变化。由于温度变化,碳膜的这种结构改性可以导致侵犯碳涂层的疏水性质。这些发现可以为基于碳的设备的技术设计提供机会。

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