Preparation method for Raman active substrate with adsorbing effect on malachite green
An active substrate, malachite green technology, applied in the direction of Raman scattering, metal processing equipment, instruments, etc., can solve problems such as the sensitivity of Raman spectroscopy, and achieve a significant surface enhancement effect, enhanced selectivity, and strong selectivity Effect
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Embodiment 1
[0046] This embodiment provides a surface-enhanced Raman spectroscopy active substrate, such as figure 1 and image 3 Shown, its preparation method comprises the following steps,
[0047] Step 1. Add formaldehyde with a mass fraction of 37% and ammonia water with a mass fraction of 25% to 100ml of AgNO3 solution in sequence, mix with ultrasound and react at 30°C for 2 minutes, collect the precipitate after centrifugation, and put the precipitate into a 30ml In absolute ethanol, Ag nanoparticles with a diameter of 65 nm were obtained.
[0048] Step 2, wrapping a layer of uniform SiO on the surface of the above-mentioned Ag nanoparticles 2 film, to obtain Ag@SiO with consistent morphology 2 nanoparticles, and then modify their surface with acrylic.
[0049] The specific method is: wrap a uniform silicon dioxide film on the surface of the Ag nanoparticles, the specific method is: add 20 mL of ammonia (mass fraction: 6%) and 5 mL of TEOS in the above-mentioned 30 ml of silver...
experiment example
[0055] Ag@SiO obtained in Example 1 2 Ag@SiO obtained from @MIPs and Comparative Example 1 2 Adsorption control experiments for @NIPs.
[0056] The specific method is: weigh 10mg Ag@SiO 2 @MIPs and Ag@SiO 2 @NIPs particles, then put them in a 100ml beaker, then add malachite green standard solutions of different concentrations to it, shake fully, separate after 5 hours, measure the absorbance of the solution after separation by ultraviolet spectrophotometry, and draw the corresponding The concentration of malachite green, and then according to the malachite green concentration of the standard solution before separation, according to the difference between the two, calculate the adsorption amount of two kinds of corresponding nanoparticles to the malachite green molecule, and each group of experiments above is carried out three times respectively. It can be seen from the test results that Ag@SiO 2 The adsorption capacity of @MIPs nanoparticles to malachite green can reach m...
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