Synthesis and application of fluorescent probe for detecting diethyl chlorophosphate

A technology of diethyl chlorophosphate and fluorescent probes, which can be used in fluorescence/phosphorescence, compounds of Group 4/14 elements of the periodic table, luminescent materials, etc., and can solve the problems of obvious differences, poor detection accuracy, and detection.

Pending Publication Date: 2020-10-23
SOUTHWEST JIAOTONG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

In addition, although some fluorescent probes are currently used to detect war toxin simulants, most of the applications of such fluorescent probe molecules are in solutions or on test paper.
For example, the research work carried out by S.Huang, Y.Wu, F.Zeng, L.Sun, S.Wu et al. is mostly based on the detection test paper for the detection of diethyl chlorophosphate vapor. This application has the problem that it cannot be represented by accurate data, and can only be identified by naked eye observation. The research work of S.K.She

Method used

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  • Synthesis and application of fluorescent probe for detecting diethyl chlorophosphate
  • Synthesis and application of fluorescent probe for detecting diethyl chlorophosphate
  • Synthesis and application of fluorescent probe for detecting diethyl chlorophosphate

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Embodiment

[0049] (1) Synthesis of a fluorescent probe for detecting diethyl chlorophosphate:

[0050] A kind of fluorescent probe synthesis for detecting diethyl chlorophosphate comprises the following steps:

[0051] (1) Under the protection of argon, put 2,2'-dihydroxy-[1,1'-binaphthyl]-3-carbaldehyde (314.0mg, 1mmol) in a 100mL round bottom flask, then add 30mL ultra-dry Ethanol makes it fully dissolved;

[0052] (2) Add 2,3-diaminonaphthalene (196.0mg, 1.2mmol) at room temperature, and then add sodium metabisulfite (228.0mg, 1.2mmol);

[0053] (3) Heating and reflux at 85°C for 3 hours, after cooling down to room temperature, extracting twice with 30 mL of ethyl acetate after removing the solvent by rotary evaporation, washing the organic phase with distilled water and saturated brine successively, and drying over anhydrous sodium sulfate, Rotary evaporation to obtain a brown solid crude product, using petroleum ether and ethyl acetate volume ratio of 3:1 as the eluent phase, colu...

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Abstract

The invention discloses synthesis and application of a fluorescent probe for detecting diethyl chlorophosphate. A 1, 1 '-binaphthol structure based silicon compound fluorescent probe is synthesized. The silicon-containing compound fluorescent probe can realize specific detection of diethyl chlorophosphate serving as a war poison stimulant; the response speed is high, the detection limit is low; the light-emitting wavelength is long; the commercial degree is high; the cost required by probe synthesis is greatly reduced; the invention further discloses an application method of the fluorescent probe for detecting diethyl chlorophosphate based on normalization processing data. A miniature spectrum analyzer, an excitation light source and a computer are adopted to carry out signal transmissionthrough a signal transmission optical fiber, unique advantage of electromagnetic interference resistance is achieved, the optical fiber probe has the advantage of corrosion resistance, due to the accuracy of optical signals, the sensor is different from conventional naked eye observation, and the sensor has the advantage of being high in diethyl chlorophosphate steam detection accuracy.

Description

technical field [0001] The invention relates to the synthesis and application of a fluorescent probe for detecting diethyl chlorophosphate, and belongs to the technical field of synthesis and application of fluorescent probes for war nerve agent simulants. Background technique [0002] Organophosphorus compounds (OPS) have been widely used in agriculture as pesticides and herbicides due to their high toxicity, and have also been used in warfare as chemical warfare agents (CWA). Among them, G-type nerve agents appeared during World War II, including Tabun, Sarin, Soman and Cyclosarin. They can cause irreversible damage to the enzyme acetylcholinesterase in the human nervous system and affect neurotransmission, and people exposed to nerve agents die of respiratory paralysis within minutes. Although such CWAs are strictly restricted in the international community, there are still incidents where terrorists use them to take people's lives, such as the terrorist attack on the To...

Claims

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Application Information

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IPC IPC(8): C07F7/18C07F7/20C09K11/06G01N21/64
CPCC07F7/1804C07F7/188C07F7/20C09K11/06G01N21/6402G01N21/643C09K2211/1011C09K2211/1044C09K2211/1096
Inventor 王雅雯冯序彭羽
Owner SOUTHWEST JIAOTONG UNIV
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