Method for preparing zirconium-based micro-porous coordination polymer
A coordination polymer and microporous technology, applied in the field of synthesis and preparation, can solve problems such as difficult separation, low production efficiency, and high price, and achieve the effects of shortening reaction time, improving production efficiency, and reducing costs
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[0013] First, the preparation method of the zirconium-based microporous coordination polymer according to the first aspect of the present invention is described, which includes the steps of: dissolving the zirconium source zirconium carbonate in an organic solvent containing a conditioning agent, acid chloride, and deionized water to obtain a mixture, wherein , the organic solvent is one or both of N,N'-dimethylformamide (DMF), N,N'-diethylformamide (DEF); then the organic carboxylic acid ligand is dissolved in The mixture is heated for reaction; after the reaction, solid-liquid separation is carried out, and the separated solid is washed and activated to obtain a zirconium-based microporous coordination polymer, and the separated liquid (mainly organic solvent) can be recycled without purification.
[0014] In the preparation method of the zirconium-based microporous coordination polymer according to the present invention, by using zirconium carbonate as the zirconium source, ...
Embodiment 1
[0027] Zirconium carbonate (ZrO 2 The mass content of meter is 40%) dissolved to contain acetyl chloride CH 3 COCl, acetic acid HAc DMF solution, then add deionized water to obtain a mixture, then dissolve 1,4-terephthalic acid (BDC) into the mixture, heat the mixture to 130 ° C for 4 hours, the reaction is over Afterwards, solid-liquid separation is carried out, and the separated solid is washed and activated to obtain a zirconium-based microporous coordination polymer product with a product yield of 93% and a specific surface area of 1540m 2 / g. The addition amount of each substance is shown in Table 1.
[0028] Table 1
[0029]
Embodiment 2
[0031] Zirconium carbonate (ZrO 2 The mass content of meter is 40%) dissolved to contain benzoyl chloride C 7 h 5 ClO, benzoic acid (BA) in DEF solution, followed by adding deionized water to obtain a mixture, then 4,4'-biphenyldicarboxylic acid (4,4'-BPDC) was dissolved in the mixture, and the mixture was heated React at 150°C for 2 hours. After the reaction, solid-liquid separation is carried out. The separated solid is washed and activated to obtain a zirconium-based microporous coordination polymer product with a product yield of 65% and a specific surface area of 2755m 2 / g. The addition amount of each substance is shown in Table 2.
[0032] Table 2
[0033]
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