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Facile one-step fabrication of upconversion fluorescence carbon quantum dots anchored on graphene with enhanced nonlinear optical responses

机译:简便的一步法制备锚固在石墨烯上的上转换荧光碳量子点,具有增强的非线性光学响应

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摘要

A novel nanocomposite hybrid, carbon quantum dots (CQD)/graphene oxide (GO), which combines the favorable optical properties of both its components, is synthesized by a facile one-step electrochemical method. Transmission electron microscopy, Raman spectroscopy, UV-vis spectroscopy, and fluorescence studies show that the CQDs uniformly attach on the GO surface, which enables highly efficient energy transfer between CQDs and GO. The nonlinear optical and optical limiting (OL) performances are investigated by the open-aperture Z -scan technique in the nanosecond regime using a laser with a wavelength of 532?nm. The as-prepared CQD/GO composite offers a significantly improved OL performance compared with GO because of the charge/energy transfer process between the CQDs and GO. The main contributors to the enhanced OL effect in the CQD/GO hybrid are a combination of nonlinear scattering and increased nonlinear absorption resulting from efficient charge/energy transfer at the CQD/GO interface.
机译:通过一种简便的单步电化学方法合成了一种新颖的纳米复合材料,即碳量子点(CQD)/氧化石墨烯(GO),其结合了两个组分的良好光学特性。透射电子显微镜,拉曼光谱,紫外可见光谱和荧光研究表明,CQD均匀地附着在GO表面上,从而实现了CQD和GO之间的高效能量转移。非线性光学和光学极限(OL)性能是通过开孔Z扫描技术在纳秒范围内使用波长为532?nm的激光器研究的。由于CQD与GO之间的电荷/能量转移过程,与GO相比,所制备的CQD / GO复合材料可显着提高OL性能。 CQD / GO混合体中增强的OL效应的主要贡献是非线性散射和CQD / GO界面有效电荷/能量转移导致的非线性吸收增加的结合。

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