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Thermally stable gold nanorod dispersed silicone composite with plasmonic resonance in the optical communication window

机译:具有等离子体共振的热稳定金纳米棒分散有机硅复合材料在光通信窗口中

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Gold nanorods (AuNRs) possess a high optical nonlinear coefficient, ultrafast optical response speed and widely tunable localized surface plasmon resonance (LSPR) wavelength covering the visible and near infrared region. Therefore, they are extensively investigated for many optical applications. However, the poor thermal stability of the AuNRs seriously restricts their practical performance. In addition, for many applications, such as optical communication or laser modulation, AuNRs have to be combined with transparent solids, for example polymers, glass or crystals to make devices. Here, we report on the preparation of 0.23 mg AuNR dispersed methyl silicone resin (MSR) with longitudinal LSPR (L-LSPR) wavelength (1450 nm) in the optical communication window. We found that AuNR-silicone composites possess high thermal stability. After calcination in ambient environment at a temperature of 250 degrees C for 10 h, the L-LSPR peak of the sample can remain longer than 1380 nm, implying that the NR shape of the Au particles was well maintained. Using the open-aperture Z-scan technique, the nonlinear absorption coefficient of the composites was measured as -11.71 cm GW(-1), higher than many nonlinear materials. Thus, the thermally stable AuNR@SiO2-MSR composite with high nonlinearity is promising for practical applications in the optical communication window.
机译:金纳米棒(AuNRs)具有高光学非线性系数、超快的光学响应速度和覆盖可见光和近红外区域的宽可调局部表面等离子体共振(LSPR)波长。因此,它们在许多光学应用中得到了广泛的研究。然而,AuNRs较差的热稳定性严重制约了其实用性能。此外,对于许多应用,例如光通信或激光调制,AuNR必须与透明固体(例如聚合物、玻璃或晶体)结合以制造器件。在这里,我们报道了在光通信窗口中制备0.23 mg AuNR分散甲基硅树脂(MSR)的纵向LSPR(L-LSPR)波长(1450 nm)。研究发现,AuNR-有机硅复合材料具有较高的热稳定性。在250°C温度下煅烧10 h后,样品的L-LSPR峰可以保持在1380 nm以上,表明Au颗粒的NR形状保持良好。采用开孔Z扫描技术测得复合材料的非线性吸收系数为-11.71 cm GW(-1),高于许多非线性材料。因此,具有高非线性的热稳定AuNR@SiO2-MSR复合材料在光通信窗口的实际应用前景广阔。

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