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Generation Of Nanospikes Via Laser Ablation Of Metals In Liquid environment And Their Activity In Surface-enhanced Raman scattering Of Organic Molecules

机译:在液体环境中通过激光烧蚀金属产生纳米钉及其在有机分子的表面增强拉曼散射中的活性

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The formation of dense arrays of nanospikes occurs under laser ablation of bulk targets (Ag, Au, Ta, Ti) immersed in liquids such as water or ethanol. The average height of spikes is 50 nm and their density on the target amounts to 10_(10) cm_(-2). The effect is observed with sufficiently short laser pulses. In particular, either a 350 ps or a 90 ps Nd: YAG lasers are used in their fundamental harmonics. The nanospikes are characterized by UV-Visible reflection spectrometry and atomic force microscopy. The oscillations of electrons within nanospikes result in a permanent coloration of the surface and a modification of the optical reflection spectra of the metal. Scanning the laser beam along the metal surface allows its nanostructuring over extended areas (~1 cm~2). The nanostructured Ag surface shows enhanced Raman scattering of acridine molecules at a concentration of 10~(-5) M/l, whereas the initial Ag targets do not show any signal within the accuracy of measurements.
机译:在激光烧蚀浸没在诸如水或乙醇之类的液体中的大块目标(Ag,Au,Ta,Ti)的情况下,会形成密集的纳米尖峰阵列。尖峰的平均高度为50 nm,它们在目标上的密度为10_(10)cm _(-2)。在足够短的激光脉冲下可以观察到这种效果。特别是,使用350 ps或90 ps的Nd:YAG激光器产生基本谐波。纳米钉的特征在于紫外可见光谱和原子力显微镜。纳米钉中的电子振荡会导致表面永久变色,并改变金属的光反射光谱。沿着金属表面扫描激光束可以使其在扩展的区域(约1 cm〜2)内形成纳米结构。纳米结构的Ag表面在10〜(-5)M / l的浓度下显示出enhanced啶分子的拉曼散射增强,而初始Ag目标在测量精度范围内未显示任何信号。

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