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Probing Applications of Laser-Ablated Ag Colloids in SERS Spectroscopy: Improvement of Ablation Procedure and SERS Spectral Testing

机译:激光烧蚀的银胶体在SERS光谱中的探测应用:烧蚀过程和SERS光谱测试的改进

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摘要

The possibilities to employ laser-ablated Ag colloids as stable active surfaces for reproducible SERS and SERRS spectral measurements were explored. Ag colloids prepared by laser ablation of Ag foil in water under varied conditions were characterized by surface plasmon absorption and transmission electron microscopy. The presence 0f large Ag particles in these colloids and their sedimentation induce undesired time dependence of the optical characteristics of the colloids. Fragmentation of these large particles by laser radiation in the course of the ablation process or by an additional irradiation of the resulting colloids was found to be the key to optimization of the particle size distribution of the ablated colloids. The presence of chlorides in the aqueous medium during ablation provides reduction of the average particle size, prevents formation of large particles, and increases the efficiency of the ablation process. However, it also reduces stability of the colloid against spontaneous aggregation and modifies the colloidal surface by Cl↑(-). A chemical test based on SERF& spectral monitoring of the kinetics of a free base porphyrin metalation provided very good reproducibility when applied to the optimized Ag colloids ablated in pure water. By contrast, poor reproducibility of the same test was obtained for the chemically prepared colloids.
机译:探索了使用激光烧蚀的Ag胶体作为稳定的活性表面进行可再现SERS和SERRS光谱测量的可能性。通过表面等离子体激元吸收和透射电子显微镜表征了在不同条件下通过在水中对银箔进行激光烧蚀制备的银胶体。这些胶体中0f大的Ag颗粒的存在及其沉降引起胶体光学特性的不良时间依赖性。发现在烧蚀过程中通过激光辐射或通过额外照射所得胶体而使这些大颗粒破碎是优化烧蚀胶体粒度分布的关键。烧蚀过程中水性介质中氯化物的存在降低了平均粒径,防止了大颗粒的形成,并提高了烧蚀过程的效率。但是,它也降低了胶体抵抗自发聚集的稳定性,并通过Cl↑(-)修饰了胶体表面。基于SERF的化学测试和对游离碱卟啉金属化动力学的光谱监测,将其应用于在纯水中烧蚀的优化Ag胶体时,具有很好的重现性。相反,对于化学制备的胶体,相同测试的重现性差。

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