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Optical and Photoacoustic Properties of Laser-Ablated Silver Nanoparticles in a Carbon Dots Solution

机译:碳点溶液中激光烧蚀银纳米粒子的光学和光声性能

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摘要

This study used the carbon dots solution for the laser ablation technique to fabricate silver nanoparticles. The ablation time range was from 5 min to 20 min. Analytical methods, including Fourier transform infrared spectroscopy (FTIR), UV-visible spectroscopy, transmission electron microscopy, and Raman spectroscopy were used to categorize the prepared samples. The UV-visible and z-scan techniques provided optical parameters such as linear and nonlinear refractive indices in the range of 1.56759 to 1.81288 and 7.3769 × 10−10 cm2 W−1 to 9.5269 × 10−10 cm2 W−1 and the nonlinear susceptibility was measured in the range of 5.46 × 10−8 to 6.97 × 10−8 esu. The thermal effusivity of prepared samples, which were measured using the photoacoustic technique, were in the range of 0.0941 W s1/2 cm−2 K−1 to 0.8491 W s1/2 cm−2 K−1. The interaction of the prepared sample with fluoride was investigated using a Raman spectrometer. Consequently, the intensity of the Raman signal decreased with the increasing concentration of fluoride, and the detection limit is about 0.1 ppm.
机译:该研究使用了用于制造银纳米颗粒的激光烧蚀技术的碳点溶液。消融时间范围为5分钟至20分钟。分析方法,包括傅立叶变换红外光谱(FTIR),UV可见光谱,透射电子显微镜和拉曼光谱法分类为制备的样品。 UV可见和Z扫描技术提供了光学参数,例如线性和非线性折射率,其范围为1.56759至1.81288和7.3769×10-10cm 2 W-1至9.5269×10-10cm 2 W-1和非线性敏感性在5.46×10-8至6.97×10-8 eSU的范围内测量。使用光声技术测量的制备样品的热力产生性在0.0941W S1 / 2cm-2k-1至0.8491W S1 / 2cm-2K-1的范围内。使用拉曼光谱仪研究制备的样品与氟化物的相互作用。因此,随着氟化物浓度的增加,拉曼信号的强度降低,检测极限为约0.1ppm。

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