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Tunable Optical Absorption of Graphene Quantum Dots with Transition Metal Adatom

机译:具有过渡金属Adatom的石墨烯量子点的可调光学吸收

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This work presents an analysis of the optical properties of transition metal adatom-graphene quantum dot complexes (TM-GQDs). TM-GQDs with five metals (Cr, Mo, W, Pd, and Pt) and pristine GQDs were investigated to explore the possibility of engineering the optical characteristics. By Density Functional Theory and Time-Dependent Density Functional Theory, excited energy states and absorption spectra were analyzed. As a function of graphene quantum dot sizes and TMs, significant changes in HOMO-LUMO levels and optical transition energies were observed. The HOMO-LUMO gaps and energy levels in the visible range clearly indicate the adatom induced energy level shifts, showing smaller energy gaps in TM-GQDs than the pristine GQDs. The calculated THz absorption spectra show strong dependency on the size and adatom mass of TM-GQDs. The tunable optical properties of the TM-GQDs can be utilized as optical sources for future display applications.
机译:该工作提出了过渡金属adatom-石墨烯量子点复合物(TM-GQDS)的光学性质的分析。 研究了具有五个金属(Cr,Mo,W,Pd和Pt)和原始GQDS的TM-GQDS,以探讨工程光学特性的可能性。 通过密度函数理论和时间依赖性密度函数理论,分析了激发的能量状态和吸收光谱。 作为石墨烯量子点尺寸和TMS的函数,观察了同源卢米水平和光学过渡能量的显着变化。 可见范围中的HOMO-LUMO间隙和能量水平清楚地表明ADATOM诱导的能级换档,显示TM-GQDS的较小能量间隙而不是原始GQD。 计算的THz吸收光谱显示出强大依赖于TM-GQD的尺寸和adatom质量。 TM-GQD的可调光学特性可用作未来显示应用的光源。

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