A preparation method of a multi-dendritic gold-silver composite nanomaterial with surface-enhanced Raman scattering properties
A surface-enhanced Raman and gold-silver composite technology, which is applied in Raman scattering, nanotechnology for materials and surface science, analytical materials, etc., can solve problems such as unfavorable environmental protection, achieve low cost, excellent SERS characteristics, excellent Effect of Surface Enhanced Raman Scattering Effect
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Embodiment 1
[0053] A multi-branched gold-silver composite nanomaterial with excellent surface-enhanced Raman scattering characteristics, the mass content of gold in the composite nanomaterial is 66%, and the mass content of silver is 34%; the composite nanomaterial is nanoparticles Stacked, the surface of the nanoparticles is a dendritic structure, and each nanoparticle is composed of a central solid structure and an elongated branch structure on the surface of the central solid structure, and the average size of the nanoparticles is 50nm.
[0054] The preparation method of the above-mentioned multi-dendrite gold-silver composite nanomaterial with excellent surface-enhanced Raman scattering characteristics comprises the following steps:
[0055] (1) Dissolve 0.34g of silver nitrate and 40μL T80 in 10mL of deionized water at room temperature, and disperse ultrasonically for 5 minutes to obtain a mixed solution; Density 12GW / cm 2 The Nd-YAG laser ablated the gold target in the mixed soluti...
Embodiment 2-10
[0065] A kind of preparation method of the branched gold-silver composite nanomaterial with excellent surface-enhanced Raman scattering characteristics, as described in Example 1, the difference is that in step (2), add 80, 95, 110, 125, 140, 155, 170, 185, 200μL of 0.05mol / L chloroauric acid aqueous solution.
Embodiment 11
[0067] A method for preparing a multi-dendritic gold-silver composite nanomaterial with excellent surface-enhanced Raman scattering properties is as described in Example 1, except that the laser irradiation time in step (3) is 1.5h.
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