A kind of preparation method of boscalid
A technology of boscalid and chloronicotinyl chloride, applied in the field of compound preparation, can solve the problems of high price of o-iodoaniline, unsuitable for industrialization, and high production cost of boscalid, and achieve the effects of saving catalyst cost and being convenient for recycling.
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[0029] The raw materials and reagents used in the preparation method of the novel fungicide boscalid provided by the present invention can be purchased from the market.
[0030] The progress of the reaction was monitored by thin-layer chromatography, and the spot was detected with a UV lamp or with Ce(NH 4 ) 2 (NO 3 ) 6 (0.5g) and (NH 4 ) 6 Mo 7 o 24 4H 2 O (24.0g) in 6% H 2 SO 4 (500 mL) of a yellow solution developed. The proton nuclear magnetic resonance spectrum of reaction product is measured by Varianmercuryplus400MHz nuclear magnetic resonance instrument (TMS is internal standard), and ESI mass spectrum is determined by ESQUIREIonTrapLC / MS liquid chromatography / mass spectrometry analysis, and the purity of the mixture and the target product that the reaction finishes is with Agilent1260 type efficient Liquid chromatography analysis (KromasilC 18 Stainless steel column, 250mm×4.6mm, methanol-water mixturesolvent, 65:35V / V as mobile phase, flow rate 1.0mL / min...
Embodiment 14
[0032] The preparation of embodiment 14'-chloro-2-acetamidobiphenyl
[0033] 2-Acetamidobromobenzene (21.4g, 0.1mol), p-chlorophenylboronic acid (18.7g, 0.12mol), 10% Pd(OH) 2 / C(0.14g, 1mmol of Pd(OH) 2 ), tetrabutylammonium bromide (6g) (or other quaternary ammonium salts of the same equivalent), potassium phosphate 7 water (64g) (or other inorganic bases of the same equivalent) and DMF (or other solvents) (100mL) in the set Stir at a certain temperature, stop the reaction after TLC monitors that the reaction is complete, filter, dilute the filtrate with ethyl acetate (500mL), wash with 1M NaOH solution (300mL), and saturated brine (3×500mL), wash with After drying with anhydrous sodium sulfate, the solvent was evaporated to obtain 24.2 g of the product, with a yield of 99%. 1 HNMR (400MHz, CDCl 3 )δ8.20(d, J=6.4Hz, 1H), 7.46(d, J=6.4Hz, 2H), 7.41-7.36(m, 1H), 7.31(d, J=6.4Hz, 2H), 7.24- 7.16 (m, 2H), 6.90 (s, br, 1H, NH), 2.04 (s, 3H). ESI-MS, m / z, [M+H] + : 246.2. T...
Embodiment 2
[0040] Example 2Pd(OH) 2 / C recycling
[0041] 2-Acetamidobromobenzene (21.4g, 0.1mol), Pd(OH) containing p-chlorophenylboronic acid (21.4g, 0.1mol), Example 1 filtered out 2 / C, tetrabutylammonium bromide (6g), K 3 PO 4 ·7H 2 O (64g) and DMF (100mL) were reacted at 125°C until the point of 2-acetamidobromobenzene monitored by TLC disappeared, and the aftertreatment was the same as above. The results are shown in Table 2.
[0042] Table 2Pd(OH) 2 / C recycling results
[0043]
[0044]
[0045] The results in Table 2 show that the activity of the catalyst has not changed substantially in the first two cycles, that is, the Suzuki reaction can be completed after 11 hours of reaction. From the third cycle, the activity has decreased, and the reaction time needs to be increased to complete reaction. When cycling to the 6th time, it takes 14 hours to substantially complete the reaction. But in general, Pd(OH) 2 / C can be used repeatedly when synthesizing 4'-chloro-2-a...
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