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Nonlinear optical responses of carbon quantum dots anchored on graphene oxide hybrid in solid-state transparent monolithic silica gel glasses

机译:固态透明整体硅胶玻璃中石墨烯氧化物杂种锚定碳量子点的非线性光学响应

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摘要

Exploring the nonlinear optical (NLO) response of graphene-based hybrids in solid-state three-dimensional macrostructures is vital to promote the practical development of graphene-based photonic and optoelectronic devices. Here, a solid-state hybrid of ultrafine and well-dispersed carbon quantum dots (CQDs) supported on graphene oxide (GO) was chosen as representative of such materials. The hybrid was introduced into organically modified silica gel glasses using a facile sol-gel wet chemical technique to obtain stable transparent monolithic nanocomposites, and their practical application in nonlinear optics was explored. The NLO performances were investigated by the open-aperture (OA) and closed-aperture (CA) Z-scan techniques in the nanosecond regime using a laser with a wavelength of 532 nm. The as-prepared CQD/GO SiO2 gel glasses displayed completely different NLO behavior from that of a CQD/GO suspension. The NLO performance of CQD/GO significantly improved after incorporation into SiO2 gel glasses because of the more graphitized structure of the CQD/GO hybrid. Both the OA and CA Z-scan patterns suggested that the NLO properties of the CQD/GO suspension combined nonlinear absorption and nonlinear scattering, while the NLO response of the CQD/GO SiO2 gel glasses stemmed primarily from nonlinear absorption and nonlinear refraction. In addition, this is the first report of the third-order nonlinear susceptibility chi((3)) of a CQD/GO hybrid doped in solid-state gel glasses. The present results therefore demonstrate the feasibility and versatility of CQD/GO silica gel glasses, a promising new class of highly efficient NLO materials that can be applied in optical communications, radiofrequency optoelectronics, and all-optical signal processing. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在固态三维宏观调节中探索基于石墨烯的杂交种的非线性光学(NLO)响应对于促进基于石墨烯的光子和光电器件的实际开发至关重要。这里,选择在石墨烯(GO)上支持的超细和井分散的碳量子点(CQDS)的固态杂种作为这些材料的代表。使用容易溶胶 - 凝胶湿化学技术将杂交物引入有机改性的硅胶玻璃中,以获得稳定的透明整体纳米复合材料,探讨了它们在非线性光学中的实际应用。使用波长为532nm的激光,通过开口孔径(OA)和闭孔(CA)Z扫描技术来研究NLO性能。由CQD / GO悬架的AS制备的CQD / GO SiO2凝胶玻璃显示出完全不同的NLO行为。由于CQD / GO杂种的图解结构更具石墨化结构,在SiO 2凝胶玻璃中掺入SiO 2凝胶玻璃后,CQD / Ge的NLO性能显着改善。 OA和CA Z扫描模式都表明CQD / GO悬浮液组合非线性吸收和非线性散射的NLO性质,而CQD / GO SiO2凝胶玻璃的NLO响应主要来自非线性吸收和非线性折射。此外,这是在固态凝胶玻璃中掺杂的CQD / GO杂化的三阶非线性敏感性Chi((3))的第一个报告。因此,本结果证明了CQD / GO硅胶玻璃的可行性和多功能性,这是可以应用于光通信,射频光电子和全光信号处理的高效NLO材料的有希望的新类别的高效NLO材料。 (c)2018年elestvier有限公司保留所有权利。

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