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Anthryl organic porous polymer and synthesis method thereof and application of anthryl organic porous polymer in kanamycin detection

A technology of a porous polymer and a synthesis method is applied in the application field of anthracene-based organic porous polymer and its synthesis, detection of kanamycin, and achieves the effects of good stability, good reproducibility and high yield

Active Publication Date: 2021-11-23
TIANJIN NORMAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, there are few research reports on the use of organic porous polymers to construct electrochemical aptasensors. Therefore, there are many areas worthy of research and discussion in this field. For the development of electrochemical aptasensors based on organic porous polymers for antibiotics Sensitive detection is of great significance

Method used

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  • Anthryl organic porous polymer and synthesis method thereof and application of anthryl organic porous polymer in kanamycin detection
  • Anthryl organic porous polymer and synthesis method thereof and application of anthryl organic porous polymer in kanamycin detection
  • Anthryl organic porous polymer and synthesis method thereof and application of anthryl organic porous polymer in kanamycin detection

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Experimental program
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Effect test

Embodiment 1

[0047] The synthesis method of the above-mentioned anthracene organic porous polymer includes the following steps:

[0048]The α, α'- dibromo-p-xylene and placed in a round bottom flask anthracene, round bottom flask was added methylene chloride and stirred at room temperature for 20 ~ 25 ℃ 5 minutes to obtain the supernatant. And then purged with nitrogen, was added anhydrous aluminum chloride under nitrogen atmosphere, which was placed in an oil bath for 2 days at 40 ℃ stirred (24 hours, the temperature remains constant per day), naturally down to room temperature 20 to 25 ℃, the solid was filtered to give a brown powder as the organic porous polymer anthryl, washed with water anthryl organic porous polymer, producing dried for one day (at room temperature 20 ~ 25 ℃), anthryl organic porous polymer was washed in the air 98%, wherein the amount of substance anthracenes 1.0mmol, α, α'- dibromo-p-xylene as the amount of substance 1.1 mmol, the amount of substance of anhydrous alumi...

Embodiment 2

[0051] The method of synthesizing the above organic porous polymer anthryl, comprising the steps of:

[0052] The α, α'- dibromo-p-xylene and placed in a round bottom flask anthracene, round bottom flask was added methylene chloride and stirred at room temperature for 20 ~ 25 ℃ 5 minutes to obtain the supernatant. And then purged with nitrogen, was added anhydrous aluminum chloride under nitrogen atmosphere, which was placed in an oil bath for 3 days reaction at 40 ℃ stirred (24 hours, the temperature remains constant per day), naturally down to room temperature 20 to 25 ℃, the solid was filtered to give a brown powder as the organic porous polymer anthryl, washed with water anthryl organic porous polymer, producing dried for one day (at room temperature 20 ~ 25 ℃), anthryl organic porous polymer was washed in the air 96%, wherein the amount of substance anthracenes 1.1mmol, α, α'- dibromo-p-xylene as the amount of substance 1.2 mmol, anhydrous aluminum chloride in an amount of su...

Embodiment 3

[0055] The method of synthesizing the above organic porous polymer anthryl, comprising the steps of:

[0056] The α, α'- dibromo-p-xylene and placed in a round bottom flask anthracene, round bottom flask was added methylene chloride and stirred at room temperature for 20 ~ 25 ℃ 5 minutes to obtain the supernatant. And then purged with nitrogen, was added anhydrous aluminum chloride under nitrogen atmosphere, which was placed in an oil bath for 4 days reaction at 40 ℃ stirred (24 hours, the temperature remains constant per day), naturally down to room temperature 20 to 25 ℃, the solid was filtered to give a brown powder as the organic porous polymer anthryl, washed with water anthryl organic porous polymer, producing dried for one day (at room temperature 20 ~ 25 ℃), anthryl organic porous polymer was washed in the air 99%, wherein the amount of substance anthracenes 1.3mmol, α, α'- dibromo-p-xylene as the amount of substance 1.6 mmol, the amount of substance of anhydrous aluminum ...

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Abstract

The invention discloses an anthryl organic porous polymer and a synthesis method thereof and application of the anthryl organic porous polymer in kanamycin detection, and belongs to an amorphous solid porous material, wherein the anthryl organic porous polymer is obtained by coupling polymerization of alpha, alpha'-dibromo-p-xylene and anthracene. The synthesis method comprises the following steps: uniformly distributing alpha, alpha'-dibromo-p-xylene and anthracene in dichloromethane, adding anhydrous aluminum trichloride under the protection of nitrogen, uniformly mixing, keeping at 35-40 DEG C for 2-4 days, cooling to the room temperature of 20-25 DEG C, and filtering to obtain brown powder, namely the anthryl organic porous polymer. According to the invention, the synthesis method of the anthryl organic porous polymer is simple and easy to operate, the required equipment is simple, the reproducibility is good, and the prepared anthryl organic porous polymer has the advantages of high yield, good stability and the like, and can be widely applied to the field of electrochemical impedance aptamer sensor detection.

Description

Technical field [0001] The present invention belongs to the field of kanamycin detection, and in particular to an anthracenal organic porous polymer and a synthetic method thereof and the application of the detection of the carnomycin. Background technique [0002] Kanamycin is a kind of antibiotics currently globally used, which are widely used in antibacterial or sterilization, and is also a commonly used poultry feed additive. Although kanamycin has a lot of applications, due to excessive use, it has caused a lot of health and environmental problems due to excessive use in humans, water, and dairy products. Excessive accumulation in the human body will cause rash, diarrhea, tinnitus, etc., more serious and even shock deaths. At the same time, kanamycin is present in water and food, etc., will further promote the production of super bacteria with stronger infection. In view of the harm of antibiotics, many countries have begun legislative restrictions and even disabling antibio...

Claims

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Application Information

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IPC IPC(8): G01N27/26G01N27/327G01N27/02
CPCG01N27/26G01N27/327G01N27/02
Inventor 贺鸿明薛亚奇杜淼
Owner TIANJIN NORMAL UNIVERSITY