Tetronic acid derivative and preparation method and application thereof
A technology of quaternary keto acids and derivatives, which is applied in the field of killing acaricides and agricultural insecticides, and can solve problems such as undisclosed compounds and undisclosed compound activities.
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Embodiment 1
[0245] Embodiment 1, preparation target compound 2231
[0246]
[0247] Add 0.312g of intermediate A to a 50ml flask, add 20ml of acetonitrile and 0.200g of potassium carbonate, then add a catalytic amount of sodium iodide and 0.210g of intermediate B, the system is stirred and heated to reflux for a reaction, and plate chromatography tracks the reaction for about 6hr After completion, the system was filtered, the mother liquor was evaporated to dryness with a rotary evaporator, and the residue was purified with plate chromatography to obtain 0.220 g of the product.
Embodiment 2
[0248] Embodiment 2, preparation target compound 286
[0249]
[0250] Add 0.312g of intermediate A to a 50ml flask, add 20ml of acetonitrile and 0.200g of potassium carbonate, then add a catalytic amount of sodium iodide and 0.190g of intermediate C, the system is stirred and heated to reflux for a reaction, and plate chromatography tracks the reaction for about 5hr After completion, the system was filtered, the mother liquor was evaporated to dryness with a rotary evaporator, and the residue was purified with plate chromatography to obtain 0.230 g of the product.
Embodiment 3
[0251] Embodiment 3, preparation target compound 2176
[0252]
[0253] Add 0.312g of intermediate A to a 50ml flask, add 20ml of acetonitrile and 0.200g of potassium carbonate, then add a catalytic amount of sodium iodide and 0.190g of intermediate F, the system is stirred and heated to reflux for a reaction, and plate chromatography tracks the reaction for about 6hr After completion, the system was filtered, the mother liquor was evaporated to dryness with a rotary evaporator, and the residue was purified with plate chromatography to obtain 0.172 g of the product.
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