Department of Physical and Quantum Chemistry, Faculty of Chemistry, Wroclaw University of Science and Technology, ul. Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.
Phys Chem Chem Phys. 2018 Jul 11;20(27):18862-18872. doi: 10.1039/c8cp02439a.
There have been numerous reports of boosting nonlinear optical phenomena in plasmonic nanostructures through local-field enhancement as well as through intrinsic metal nonlinearities. Here, we study the possibility of plasmonic enhancement of graphene's nonlinear absorption by creating a composite material: gold nanoparticle-decorated graphene dispersed in water. To evaluate the additive effect of combining the two materials on the saturable absorption efficiency we performed a series of f-scan (modified Z-scan) measurements using femtosecond laser pulses in the broad spectral range from 530 to 1600 nm. These studies are supplemented by TEM, UV-vis, ATR and Raman spectroscopy, revealing the mechanisms behind the formation of the composite material.
已经有大量的报告指出,通过局部场增强和固有金属非线性,可以提高等离子体纳米结构中的非线性光学现象。在这里,我们通过创建一种复合材料来研究通过等离子体增强石墨烯的非线性吸收的可能性:金纳米粒子修饰的石墨烯分散在水中。为了评估将两种材料组合对饱和吸收效率的附加效果,我们使用飞秒激光脉冲在从 530nm 到 1600nm 的宽光谱范围内进行了一系列 f-scan(改进的 Z-scan)测量。这些研究由 TEM、UV-vis、ATR 和拉曼光谱学补充,揭示了复合材料形成的背后的机制。