A kind of magnesium fluoride catalyst, its preparation method and application
A catalyst, magnesium fluoride technology, applied in the direction of physical/chemical process catalyst, dehydrohalogenation preparation, chemical instruments and methods, etc., can solve the problem that the application mode and effect of magnesium fluoride catalyst are not given.
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Embodiment 1
[0038] Dissolve 82.68g of magnesium ethylate in 570ml of isopropanol, stir to make it evenly mixed, and form a magnesium-alcohol solution. At room temperature, dissolve 31.79g of anhydrous HF in HF-Et 2 O (ether) solution was added to the magnesium-alcohol solution, stirred vigorously, and stopped stirring after 20 hours of reaction. Use a vacuum rotary evaporator to remove the volatile components in the product, put it in a vacuum oven to dry, and then obtain the catalyst precursor, which is denoted as MgF 2 -1.
Embodiment 2
[0040] Dissolve 82.68g of magnesium isopropoxide in 600ml of toluene, stir to make it evenly mixed, and form a magnesium-benzene solution. At room temperature, dissolve 25.53g of anhydrous HF in HF-Et 2 O solution was added to the magnesium-benzene solution, stirred vigorously, and stopped stirring after 20 hours of reaction. Use a vacuum rotary evaporator to remove the volatile components in the product, and then dry it in a vacuum oven to obtain the catalyst precursor, which is denoted as MgF 2 -2.
Embodiment 3
[0042] Dissolve 82.68g of magnesium acetate in 600ml of methanol, stir to make it evenly mixed, and form a magnesium-alcohol solution. At room temperature, dissolve 25.55 g of anhydrous HF in HF-CH 3 Add OH (methanol) solution into the magnesium alcohol solution, stir vigorously, and stop stirring after 20 hours of reaction. Use a vacuum rotary evaporator to remove the volatile components in the product, and then dry it in a vacuum oven to obtain the catalyst precursor, which is denoted as MgF 2 -3.
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