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Synthesis of stable silver colloids by laser ablation in water

机译:激光烧蚀在水中稳定银胶体的合成

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The stable colloid with silver nanoparticles has been produced by irradiation of metal target in deionized water by pulse 1064 nm laser. The dependences of the nanoparticle size and colloid stability on fluence, ablation time, surface conditions of the target, and thickness of the water layer have been studied. The sizes and shape of nanoparticles have been measured by dynamic light scattering and by scanning electron microscopy. It has been shown that decrease of the water layer thickness above the target surface leads to increase of the colloid stability. The proper number of treatment cycles allowed to prepare the target surface for production of the nanoparticles with average size about 34 nm obtained by statistical analysis of the scanning electron microscope images. Several methods have been used to increase the colloid stability: (1) increase of the laser fluence, (2) decrease of the water layer thickness above the target surface, (3) the treatment of the target surface by laser beam scanning. The subsequent increase of the colloid concentration by partial drying slightly enhanced the nanoparticle size. The optimized synthesis conditions and drying parameters allowed to produce the pure colloid with concentration about 0.5 g/1 and stability over a month of almost spherical silver nanoparticles with typical size 45±5 nm.
机译:通过脉冲1064nm激光通过脉冲1064nm激光照射去离子水中金属靶标的稳定的胶体。已经研究了纳米颗粒尺寸和胶体稳定性的依赖性,用于注入靶,消融时间,靶的表面条件和水层的厚度。纳米颗粒的尺寸和形状已经通过动态光散射和通过扫描电子显微镜测量。已经表明,目标表面上方的水层厚度降低导致胶体稳定性的增加。允许的适当数量的治疗循环制备靶表面,用于通过扫描电子显微镜图像的统计分析产生的平均尺寸约为34nm的纳米颗粒。已经采用了几种方法来增加胶体稳定性:(1)激光物流量的增加,(2)在目标表面上方的水层厚度降低,(3)通过激光束扫描处理目标表面。通过部分干燥的随后增加胶体浓度略微增强了纳米颗粒尺寸。优化的合成条件和干燥参数使得浓度产生约0.5g / 1的纯胶体,并且在具有典型尺寸45±5nm的一个几个几乎球形银纳米颗粒上的稳定性。

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