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Low-temperature Raman spectroscopy of copper and silver nanoparticles ion-synthesized in a silica glass and subjected to laser annealing

机译:在石英玻璃中离子合成的铜和银纳米颗粒的低温拉曼光谱

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The modification of the shape of ion-synthesized silver and copper nanoparticles in a silica glass during laser annealing has been studied for the first time by Raman spectroscopy at a temperature of 77 K. The laser annealing has been carried out for a wavelength of 694 nm at the edge of the plasmon absorption spectrum of nanoparticles. A comparison of the experimental spectra and the calculated modes of in-phase bending vibrations of the "harmonica" type in nanostrings of the corresponding metals has demonstrated their good agreement. The effects observed have been discussed from the standpoint of the size quantization of vibrations in metal nanowires. This methodical approach has made it possible to estimate the sizes of the Ag and Cu nanoparticles under the assumption that they have an elongated form; in this case, their average lengths are equal to 2.5 and 1.4 nm, respectively.
机译:首次通过拉曼光谱在77 K的温度下研究了激光退火过程中石英玻璃中离子合成的银和铜纳米粒子的形状变化。激光退火的波长为694 nm在纳米粒子的等离激元吸收光谱的边缘。实验光谱和相应金属纳米串中“谐音”型同相弯曲振动的计算模式的比较表明了它们的良好一致性。已经从金属纳米线中的振动的尺寸量化的角度讨论了观察到的效果。这种有条不紊的方法使得在假设银和铜纳米颗粒具有细长形式的情况下估算它们的尺寸成为可能。在这种情况下,它们的平均长度分别等于2.5和1.4 nm。

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