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Characterization and enhanced nonlinear optical limiting response in carbon nanodots dispersed in solid-state hybrid organically modified silica gel glasses

机译:分散在固态混合有机改性硅胶玻璃中的碳纳米点的表征和增强的非线性光学极限响应

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Freely dispersed carbon nanodots (CNDs) were introduced into a 3-glycidoxy-propyltrimethoxysilane modified silicate gel glass (i.e. an organically modified silica or ORMOSIL) by a highly efficient and simple sol-gel process, which could be easily extended to prepare functional moleculesanoparticles solid state optoelectronic devices. Scanning electron microscope imaging, Fourier transform infrared spectroscopy, pore structure measurements, ultraviolet visible spectroscopy, and fluorescence spectroscopy were used to investigate the surface characteristics, structure, texture, and linear optical properties of the CND/SiO2 ORMOSIL gel glasses. Images and UV/Vis spectra confirmed the successful dispersion of CNDs in the ORMOSIL gel glass. The surface characteristics and pore structure of the host SiO2 matrix were markedly changed through the introduction of the CNDs. The linear optical properties of the guest CNDs were also affected by the sol-gel procedure. The nonlinear optical (NLO) properties of the CNDs were investigated by a nanosecond open-aperture Z-scan technique at 532 nm both in liquid and solid matrices. We found that the NLO response of the CNDs was considerably improved after their incorporation into the ORMOSIL gel glasses. Possible enhancement mechanisms were also explored. The nonlinear extinction coefficient gradually increased while the optical limiting (OL) threshold decreased as the CND doping level was increased. This result suggests that the NLO and OL properties of the composite gel glasses can be optimized by tuning the concentration of CNDs in the gel glass matrix. Our findings show that CND/SiO2 ORMOSIL gel glasses are promising candidates for optical limiters to protect sensitive instruments and human eyes from damage caused by high power lasers. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过高效且简单的溶胶-凝胶工艺将自由分散的碳纳米点(CND)引入到3-环氧丙氧基-丙基三甲氧基硅烷改性的硅酸盐凝胶玻璃(即有机改性的二氧化硅或ORMOSIL)中,可以很容易地扩展以制备功能分子/纳米粒子固态光电器件。扫描电子显微镜成像,傅立叶变换红外光谱,孔结构测量,紫外可见光谱和荧光光谱用于研究CND / SiO2 ORMOSIL凝胶玻璃的表面特性,结构,织构和线性光学性能。图像和UV / Vis光谱证实了CND在ORMOSIL凝胶玻璃中的成功分散。通过引入CND,显着改变了主体SiO2基体的表面特性和孔结构。客体CND的线性光学性质也受到溶胶-凝胶程序的影响。 CND的非线性光学(NLO)特性是通过纳秒开孔Z扫描技术在532 nm的液体和固体基质中研究的。我们发现,将CND掺入ORMOSIL凝胶玻璃后,其NLO响应得到了显着改善。还探讨了可能的增强机制。随着CND掺杂水平的提高,非线性消光系数逐渐增加,而光学极限(OL)阈值降低。该结果表明,可以通过调节凝胶玻璃基质中CND的浓度来优化复合凝胶玻璃的NLO和OL特性。我们的发现表明,CND / SiO2 ORMOSIL凝胶玻璃有望成为光学限制器的候选产品,以保护敏感的仪器和人眼免受高功率激光造成的损害。 (C)2017 Elsevier B.V.保留所有权利。

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