Preparation and application of a silver nanorod array with tunable resonance wavelength
A nano-rod technology, applied in the field of preparation of silver nano-rod arrays, can solve the problems of short detection time and low cost, and achieve the effect of simple method, high sensitivity and low cost
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Embodiment 1
[0038] (1) After the silicon substrate or glass substrate is treated by the "piranha method", the substrate is covered with polystyrene (PS) microspheres of different diameters (50-1000nm);
[0039] (2) fixing the substrate prepared in (1) on the sample stage of the electron beam evaporation coating machine;
[0040] (3) Using metallic silver as the target material, pump the chamber of the electron beam evaporation coating machine to 3×10 -5 ~2×10 -4 Pa high vacuum;
[0041] (4) Adjust the incident angle of the electron beam to 75-85 degrees, and make the sample stage static, grow a silver nanostructure film with a rod length of 647nm on the base of the sample stage, and the top of the nanorod has a plurality of bifurcated structures.
[0042] (5) The plasmon resonance excitation wavelength of the nanorod array can be adjusted by adjusting the length of the silver nanorods, so as to obtain the best enhancement under a specific Raman laser source.
Embodiment 2
[0044] (1) After the silicon substrate or glass substrate is treated by the "piranha method", the substrate is covered with polystyrene (PS) microspheres with a diameter of 500 nm;
[0045] (2) fixing the substrate prepared in (1) on the sample stage of the electron beam evaporation coating machine;
[0046] (3) Using metallic silver as the target material, pump the chamber of the electron beam evaporation coating machine to 3×10 -5 ~2×10 -4 Pa high vacuum;
[0047] (4) Adjust the incident angle of the electron beam to 75-85 degrees, and make the sample stage static, grow a silver nanostructure thin film with a rod length of 771 nm on the base of the sample stage, and the top of the nanorod has a plurality of bifurcated structures.
[0048] (5) The plasmon resonance excitation wavelength of the nanorod array can be adjusted by adjusting the length of the silver nanorods, so as to obtain the best enhancement under a specific Raman laser source.
[0049] (6) Mix 200 μL of trace...
Embodiment 3
[0053] (1) After the silicon substrate or glass substrate is treated by the "piranha method", the substrate is covered with polystyrene (PS) microspheres with a diameter of 500 nm;
[0054] (2) fixing the substrate prepared in (1) on the sample stage of the electron beam evaporation coating machine;
[0055] (3) Using metallic silver as the target material, pump the chamber of the electron beam evaporation coating machine to 3×10 -5 ~2×10 -4 Pa high vacuum;
[0056] (4) Adjust the incident angle of the electron beam to 75-85 degrees, and make the sample stage static, grow a silver nanostructure film with a rod length of 892nm on the base of the sample stage, and the top of the nanorod has a plurality of bifurcated structures.
[0057] (5) The plasmon resonance excitation wavelength of the nanorod array can be adjusted by adjusting the length of the silver nanorods, so as to obtain the best enhancement under a specific Raman laser source.
[0058] (6) Mix 200 μL of trace hyd...
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