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Hybrid opto-chemical doping in Ag nanoparticle-decorated monolayer graphene grown by chemical vapor deposition probed by Raman spectroscopy

机译:通过拉曼光谱法通过化学气相沉积生长的Ag纳米粒子装饰单层石墨烯的杂化光学掺杂

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摘要

The novel opto-chemical doping effect in Ag nanoparticle-decorated monolayer graphene grown by chemical vapor deposition has been investigated using Raman spectroscopy for the first time. We used both noble metal nanoparticles and optical excitation, in a hybrid opto-chemical route, to tune the doping level in graphene. Metal nanoparticle-induced chemical effects and laser power-induced substrate effects alter the doping nature of graphene from p-to n-type. Compared with earlier studies, the proposed method significantly lowers the laser intensity required for optical power-dependent doping, resulting in prevention of damage to the sample due to local heating. Some other interesting observations are the enhanced peak intensity in the Raman spectrum of graphene, enhancement of the D-band intensity and the introduction of G-band splitting. This novel, cheap and easily implemented hybrid optical-chemical doping strategy could be very useful for tuning graphene plasmons on the widely used Si/SiO2 substrates for various photonic device applications.
机译:首次采用拉曼光谱研究通过化学气相沉积的Ag纳米粒子装饰单层石墨烯的新型光学掺杂效应。我们在杂交光学途径中使用了贵金属纳米粒子和光学激发,以调整石墨烯中的掺杂水平。金属纳米粒子诱导的化学效果和激光功率诱导的基底效应改变了石墨烯的掺杂性质。与早期的研究相比,所提出的方法显着降低了光学动力依赖性掺杂所需的激光强度,导致防止由于局部加热而对样品的损坏。一些其他有趣的观察是石墨烯的拉曼光谱中增强的峰值强度,增强D波段强度和G频段分裂的引入。这种新颖的,便宜且易于实施的混合光学掺杂策略对于在广泛使用的Si / SiO 2基板上调整石墨烯等级的用于各种光子器件应用非常有用。

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