Synthesis method of alpha-nitro-alpha-aryl ketone compound
A synthesis method and compound technology are applied in the field of synthesizing α-nitro-α-aryl ketone compounds, which can solve the problems of highly toxic organotin, high cost and the like, and achieve the effect of simple reaction operation.
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Embodiment 1
[0028] Using 2-nitrocyclohexanone as raw material
[0029]
[0030] 2-Nitrocyclohexanone (28.6mg, 0.20mmol), K 2 CO 3 (82.9mg, 0.60mmol) and diphenyl iodotetrafluoroborate (Ph 2 IBF 4 , CAS: 313-39-3) (220.8mg, 0.60mmol), then add 2.0mL DCE under argon atmosphere, seal with a lid, and react in an oil bath at 100°C for 2 hours. When the raw materials were consumed, the system was cooled to room temperature, then diluted with 5.0 mL of petroleum ether, and directly subjected to column chromatography (petroleum ether / ethyl acetate=40:1). A pale yellow solid (16.2 mg, yield 37.0%) was finally obtained.
[0031] The product detection data are as follows:
[0032] 1 H NMR (400MHz, CDCl 3 ):δ7.48-7.46(m,3H),7.36-7.34(m,2H),3.10-3.03(m,1H),2.94-2.88(m,1H),2.70-2.64(m,1H),2.59 -2.52(m,1H),1.98-1.89(m,3H),1.80-1.74(m,1H); 13 C NMR (100MHz, CDCl 3 ): δ200.5, 131.8, 130.0, 129.0, 128.2, 100.9, 40.0, 35.0, 27.0, 21.8.
Embodiment 2
[0034] Using 2-nitrocyclohexanone as raw material
[0035]
[0036] 2-Nitrocyclohexanone (28.6mg, 0.20mmol), K 2 CO 3 (55.3mg, 0.30mmol) and diphenyliodotrifluoromethanesulfonate (Ph 2 IOTf, CAS: 66003-76-7) (172.1mg, 0.40mmol), then add 4.0mL DCE under an argon atmosphere, seal with a lid, and react in an oil bath at 85°C for 3 hours. When the raw materials were consumed, the system was cooled to room temperature, then diluted with 6.0 mL of petroleum ether, and directly subjected to column chromatography (petroleum ether / ethyl acetate=40:1). A pale yellow solid (30.3 mg, yield 69.0%) was finally obtained.
[0037] The spectral data of the product are the same as in Example 1.
Embodiment 3
[0039] Using 2-nitrocyclohexanone as raw material
[0040]
[0041] Add 2-nitrocyclohexanone (28.6 mg, 0.20 mmol), Cs 2 CO 3 (97.7mg, 0.30mmol) and diphenyl iodide bromide (Ph 2 IBr) (180.5 mg, 0.50 mmol), then 3.0 mL of DCE was added under an argon atmosphere, sealed with a lid, and reacted in an oil bath at 65° C. for 2 hours. When the raw materials were consumed, the system was cooled to room temperature, then diluted with 6.0 mL of petroleum ether, and directly subjected to column chromatography (petroleum ether / ethyl acetate=40:1). A pale yellow solid (24.4 mg, yield 55.6%) was finally obtained.
[0042] The spectral data of the product are the same as in Example 1.
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