Cysteamine modified gold nanorod method and substrate and method for detecting acephate

An acephate and gold nanorod technology, applied in the field of SERS detection, can solve the problems of weak Raman response and insignificant enhancement effect, and achieve the effects of improved sensitivity, enhanced enhancement effect, and highly sensitive detection.

An acephate and gold nanorod technology, applied in the field of SERS detection, can solve the problems of weak Raman response and insignificant enhancement effect, and achieve the effects of improved sensitivity, enhanced enhancement effect, and highly sensitive detection.

CN109709084AActive Publication Date: 2019-05-03ANHUI UNIVERSITY

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  • Cysteamine modified gold nanorod method and substrate and method for detecting acephate
  • Cysteamine modified gold nanorod method and substrate and method for detecting acephate
  • Cysteamine modified gold nanorod method and substrate and method for detecting acephate

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Embodiment Construction

[0014] Combine below Figure 1 to Figure 2 , the present invention is described in further detail.

[0015] The invention discloses a method for modifying gold nanorods with cysteamine. The length is 60-70nm, and the width is 20-23nm; (B) mix the washed gold nanorod solution and cysteamine solution according to the volume ratio of 9:1 and add them into the volumetric flask equipped with magnetons, wherein The concentration of cysteamine solution is 10 -6 mol / L; (C) Put the volumetric flask on the mixer and stir for 60-90min; (D) After stirring, absorb the cysteamine-modified gold nanorod solution and put it in a centrifuge for centrifugation, then suck out the supernatant to obtain half Cystamine-modified gold nanorods. The surface of cysteamine-modified gold nanorods is positively charged. In the solution system, due to the repulsion of the same charge between particles, the gold nanorods are uniformly dispersed and exist stably. Therefore, the morphology of cysteamine-mod...

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Abstract

The invention especially relates to a cysteamine modified gold nanorod method. The method comprises the following steps of (A) taking a gold nanorod solution and washing, adding ultrapure water afterwashing and mixing, wherein the length of gold nanorods in the gold nanorod solution is 60-70 nm and a width is 20-23 nm; (B) mixing the washed gold nanorod solution and a cysteamine solution according to the volume ratio of 9:1 and then putting into a volumetric flask containing a magneton, wherein the concentration of the cysteamine solution is 10-6mol / L; (C) putting the volumetric flask on a blender and stirring for 60 to 90 minutes; and (D) after stirring, absorbing a cysteamine-modified gold nanorod solution and putting into a centrifugal machine for centrifugation, and then extracting asupernatant liquid to obtain cysteamine-modified gold nanorods. The invention also discloses a substrate and a method for detecting acephate. The cysteamine-modified gold nanorods are stable and uniform in form, and an enhancement effect is better. Simultaneously, an absorption effect exists between amine ions on gold nanorods and acephate molecules so as to realize the high sensitivity detectionof acephate residues.

Description

technical field [0001] The invention relates to the technical field of SERS detection, in particular to a method for modifying gold nanorods with cysteamine and a substrate and method for detecting acephate. Background technique [0002] Acephate is a slow-acting insecticide with stomach poisoning and contact killing effects, suitable for various chewing and sucking oral pesticides in vegetables, tea trees, tobacco, fruit trees, cotton, rice, wheat, rapeseed and other crops. Control of organ pests, mites and sanitation pests. Excessive, prolonged and unreasonable application methods can easily cause acephate residues in crops to exceed the standard. Traditional detection methods such as gas chromatography-mass spectrometry and high-performance liquid chromatography have high precision, but the pretreatment is cumbersome, time-consuming and expensive, and is not suitable for solving widespread residue problems. Surface-enhanced Raman spectroscopy (SERS for short) has great ...

Claims

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Application Information

Patent Timeline
03 May 2019
Publication
CN109709084A
IPC
G01N21/65
Inventors
翁士犢; ζœ±ζ–‡η§€