Three-dimensional covalent triazinyl calix[4]arene polymer and preparation method and application thereof
A technology of triazine-based cups and polymers, applied in alkali metal compounds, chemical instruments and methods, water pollutants, etc., can solve the problems of slow adsorption speed, low processing capacity, difficult regeneration process, etc., and achieve improved thermal stability , the effect of increasing the nitrogen content
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Embodiment 1
[0035] This example is used to prepare a three-dimensional covalent triazine-based calix[4]arene polymer (CaCOP).
[0036]
[0037] Concrete preparation method comprises the following steps:
[0038] 1) Add 4-aminocalix[4]arene and s-triazine to tetrahydrofuran at a molar ratio of 1:2, stir and react in an ice bath for 8 hours, stop the reaction, remove the solvent in turn, and wash with n-hexane for several times , obtain the intermediate (e) after drying, and the yield is 80%;
[0039] 2) Dissolve intermediate (e) and 1,3,5-(4-aminophenyl)benzene in dioxane containing potassium carbonate, and react at 110°C for 72h, and cool the product to After centrifugation at room temperature, washing with water, methanol and DMF, and vacuum drying, a three-dimensional covalent triazine-based calix[4]arene polymer (CaCOP) is obtained, wherein intermediates (e), 1,3 , The molar ratio of 5-(4-aminophenyl)benzene to potassium carbonate was 1:2.7:10 to obtain 600mg of triazinylcalix[4]a...
Embodiment 2
[0047] This example is used to investigate the static adsorption capacity of the triazine-based calix[4]arene polymer (CaCOP) prepared in Example 1 on dyes.
[0048] The specific experimental process is as follows:
[0049] At an experimental environment temperature of 25°C, first wash CaCOP (50.00mg) with 8mL deionized water for 5.00min, then filter through a PTFE membrane filter (0.45μm), and then add CaCOP and dye stock solution (0.100mM, 50.00mL) Add to a 100.0mL round bottom flask in turn, and stir the mixture immediately after adding the dye stock solution, and take out the suspension (2.00mL) in the flask with a syringe at a certain time interval, and then immediately use a PTFE membrane filter (0.45μm ) and determine the residual concentration of the dye in each filtrate sample by UV-vis spectroscopy.
[0050] The dye stock solutions used contained one of the dyes shown below.
[0051]
[0052] The detection wavelengths of the characteristic absorption peaks of th...
Embodiment 3
[0060] This example is used to investigate the flow adsorption capacity of the triazine-based calix[4]arene polymer (CaCOP) prepared in Example 1 for dyes.
[0061] Specifically, a 5mL syringe (with an inner diameter of 1 cm and a total length of 5 cm, filled with a layer of cotton wool at the outlet of the syringe to prevent mass loss) was used to carry out a flow-through adsorption separation experiment. The experimental process is as follows:
[0062] Such as Figure 9 As shown, at the experimental ambient temperature of 25 °C, CaCOP (100.00 mg) was first washed with 15 mL of deionized water for 5.00 min, then filtered through a PTFE membrane filter (0.45 μm), and then CaCOP was transferred to a 5 mL syringe (fill height 2mm), then add 2mL dye stock solution (solution properties are the same as in Example 2) in the syringe, and push the piston within 30s (3-4mL / min flow rate) to filter the dye stock solution through the CaCOP adsorption layer, collect the filtrate, The met...
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