Tunable optical response of defective rGO-like carbon films studied by spectroscopic ellipsometry

Sudarsono, Faridawati, Endhah Purwandari, Deril Ristiani, Eri Widianto, Iman Santoso, Gatut Yudoyono, Darminto
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Abstract

We report the tunable optical response of biomass-derived defective rGO-like carbon films by spectroscopic ellipsometry in the energy range of 1.5–5.5 eV deposited by the spray pyrolysis method. The defects in rGO-like carbon were generated by a heating process from 400 to 1000 °C with an increase of every 200 °C. The investigation results showed that the optical response at the imaginary part peak of the dielectric constant and optical conductivity of the defective rGO-like films increased and red-shifted from 5.4 to 5.1 eV with the increase of defect states, indicating the enhancement of photon energy absorption associated with the resonance exciton effect. In the future, this finding can be an alternative material for cheaper and renewable commercial rGO films and provide insight into the application of rGO-like films in many optoelectronic devices with a simple deposition method.
通过光谱椭偏仪研究有缺陷的 rGO 类碳薄膜的可调光学响应
我们报告了通过喷雾热解法沉积的生物质源缺陷 rGO 类碳薄膜在 1.5-5.5 eV 能量范围内的可调光学响应。类 rGO 碳中的缺陷是通过从 400 ℃ 到 1000 ℃ 的加热过程产生的,加热温度每升高 200 ℃ 增加一次。研究结果表明,随着缺陷态的增加,有缺陷的类 rGO 薄膜介电常数和光导率在虚部峰值处的光学响应增加,并从 5.4 eV 红移到 5.1 eV,这表明与共振激子效应相关的光子能量吸收增强。未来,这一发现可作为更廉价、可再生的商用 rGO 薄膜的替代材料,并通过简单的沉积方法为类 rGO 薄膜在许多光电器件中的应用提供启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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