Top silver-cladding gold nanorod array and preparation method and application thereof
A gold nanorod and silver-coated technology, which is applied in the field of gold nanorod arrays coated with silver at the top and its preparation field, can solve the problems of unstable SERS activity, poor array performance of gold nanowires, affecting SERS effect, etc., and achieve excellent arrays. properties, enhance the effect of enhancing peaks, and arranging rules
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Embodiment 1
[0028] The concrete steps of preparation are:
[0029] Step 1: Coating a liquid organic matter on the gold film on the side where the gold nanorod array is not grown, wherein the liquid organic matter is α-ethyl cyanoacrylate; organic substrate. Then place the aluminum oxide template with a gold film deposited on one side, gold nanorod arrays deposited in the holes, and organic matter coated on the gold film in an acid or alkaline solution to corrode the aluminum oxide template; figure 1 b and figure 1 as shown in c, and as figure 1 The gold nanorod array shown by the curve in d.
[0030] Step 2, using thin film evaporation technology to evaporate silver on the top of the gold nanorod array, wherein the thin film evaporation technology uses ion sputtering technology (or electron beam evaporation technology or vacuum evaporation technology), and its sputtering current is 3.5mA, The sputtering time is 0.5 min. The diameter of the obtained silver nanoparticles is 60nm, which...
Embodiment 2
[0033] The concrete steps of preparation are:
[0034] Step 1: Coating a liquid organic matter on the gold film on the side where the gold nanorod array is not grown, wherein the liquid organic matter is α-ethyl cyanoacrylate; organic substrate. Then place the aluminum oxide template with a gold film deposited on one side, gold nanorod arrays deposited in the holes, and organic matter coated on the gold film in an acid or alkaline solution to corrode the aluminum oxide template; figure 1 b and figure 1 as shown in c, and as figure 1 The gold nanorod array shown by the curve in d.
[0035] Step 2, using thin film evaporation technology to evaporate silver on the top of the gold nanorod array, wherein the thin film evaporation technology uses ion sputtering technology (or electron beam evaporation technology or vacuum evaporation technology), and its sputtering current is 3.25mA, The sputtering time is 1 min. The diameter of the obtained silver nanoparticles is 68nm, which ...
Embodiment 3
[0038] The concrete steps of preparation are:
[0039] Step 1: Coating a liquid organic matter on the gold film on the side where the gold nanorod array is not grown, wherein the liquid organic matter is α-ethyl cyanoacrylate; organic substrate. Then place the aluminum oxide template with a gold film deposited on one side, gold nanorod arrays deposited in the holes, and organic matter coated on the gold film in an acid or alkaline solution to corrode the aluminum oxide template; figure 1 b and figure 1 as shown in c, and as figure 1 The gold nanorod array shown by the curve in d.
[0040] Step 2, using thin film evaporation technology to evaporate silver on the top of the gold nanorod array, wherein the thin film evaporation technology adopts ion sputtering technology (or electron beam evaporation technology or vacuum evaporation technology), and its sputtering current is 3mA, sputtering The injection time is 3 minutes. Silver nanoparticles with a diameter of 75 nm, such ...
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