The origin of a common compound about 289042-10-0

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Adding a certain compound to certain chemical reactions, such as: 289042-10-0, N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, can increase the reaction rate and produce products with better performance than those obtained under traditional synthetic methods. Here is a downstream synthesis route of the compound, Recommanded Product: N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, blongs to pyrimidines compound. Recommanded Product: N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide

Sodium bis (trimethylsilyl) amide (1 M in tetrahydrofuran, 23 mi) is added dropwise, AT-74C, to a suspension of the compound of formula (38) (12 g, 22.3 MMOL) in tetrahydrofuran (130 M .). STIRRING is carried out at-74C for 1 hour and then a solution of the compound of formula (40) (6.9 g, 26.8 MMOI) in toluene (28 ML) is added dropwise. Stirring is then carried out AT-74C for 1 hour, then warming to 10C over the course of 1 hour and stirring for a further 1 hour at that temperature. A mixture of acetic acid (2 ml) and water (8.4 ML) is added, at 10C, to the resulting yellow suspension and stirring is carried out at room temperature for 5 minutes. The tetrahydrofuran is then distilled off, and, at 40C, 45 ml of water are added to the reaction mixture and vigorous stirring is carried out for 5 minutes. The aqueous phase is separated off and a solution of sodium hydrogen carbonate (2.27 G) in water (45 ml) is added to the organic phase. Vigorous stirring is again carried out for 5 minutes and then the aqueous phase is removed again. The organic phase is diluted with 250 ML of toluene, washed successively with water and saturated sodium chloride solution and dried (using NA2SO4). The salt mixture is filtered off and the filtrate is concentrated by evaporation. The concentrated residue is then purified by column chromatography on silica gel (hexane: ethyl acetate 8: 1). 2.59 G (61 %) of the desired product (39) can be obtained in the form of colourless crystals. ‘H NMR (300 MHz, CDCI3) : 0.91-1. 08 (m, 1H) ; 1.20 (d, J = 6. 7 HZ, 6H); 1. 24 (S, 3H); 1. 38 (S, 9H); 1.41 (S, 3H); 1.41-1. 56 (m, 1 H) ; 2.21 (dd, J = 15. 2, 7. 9, 1 H) ; 2. 35 (dd, J = 15. 0, 5. 0 HZ, 1H) ; 3. 27-3. 37 (m, 1H) ; 3. 43 (S, 3H); 3.52 (S, 3H); 4.17-4. 24 (m, 1H) ; 4. 47-4. 53 (m, 1H) ; 5.43 (dd, J = 16.4, 5.5 Hz, 1H) ; 6.55 (dd, J = 16.1, 0.8 Hz, 1H) ; 7.24 (dd, J = 8.8, 8.8 HZ, 2H); 7.65 (dd, J = 8.8, 5.6 Hz, 2H). 13C NMR (75 MHz, CDCI3) : 18.7, 20.6, 20.7, 27.0, 29.0, 30.9, 32.0, 35.0, 41.3, 41.4, 64.8, 68.1, 79.6, 97.7, 113.7 (JCF = 21.7 Hz), 120.0, 122.0, 131. 0 (JCF = 8.4 Hz), 133.2 (JCF = 3.2 Hz), 136.3, 156.0, 162.0 (JCF = 249 Hz), 162.2, 168.8, 173.6.

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Reference:
Patent; CIBA SPECIALTY CHEMICALS HOLDING INC.; WO2004/103977; (2004); A2;,
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

New learning discoveries about 289042-10-0

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Adding a certain compound to certain chemical reactions, such as: 289042-10-0, N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, can increase the reaction rate and produce products with better performance than those obtained under traditional synthetic methods. Here is a downstream synthesis route of the compound, category: pyrimidines, blongs to pyrimidines compound. category: pyrimidines

40.0 g of compound (DPPO) and 500 ml of THF were added to a 1000 ml four-necked flask.Stir and dissolve, and replace with nitrogen three times.Under nitrogen protection, the internal temperature was lowered to -75.0 C, and 79.0 ml of 1.0 M NaHMDS/THF solution was slowly added dropwise.Control the internal temperature -80.0 C ~ -75.0 C, after the completion of the addition of the reaction, 2.0 h,After the end of the heat preservation reaction, the internal temperature is controlled from -80.0 C to -75.0 C.The compound (D7) THF solution (D7: 23.1 g, THF: 20 ml) was added dropwise, and the reaction was kept for 1.0 h after the dropwise addition;The sample was controlled until the residual of the compound (DPPO) in the reaction solution was ?1.0%, and the reaction was completed. Rise to room temperature,The reaction was quenched by adding 100 ml of a saturated ammonium chloride solution. After quenching, the material was subjected to distillation under reduced pressure at an external temperature of 50.0 C.Vacuum degree ? -0.09MPa, after evaporation to dryness, add 400.0g of toluene to dissolve,It was washed with water, concentrated, and crystallized from 400.0 g of methanol to give compound (R1) 30.0 g.

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Reference:
Patent; Zhejiang Yongtai Pharmaceutical Co., Ltd.; Wang Xuejin; Xu Xubing; Zhang Chong; Chen Hao; (18 pag.)CN109824606; (2019); A;,
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

Application of 289042-10-0

With the rapid development of chemical substances, we look forward to future research findings about 289042-10-0.

As we all know, there are many different methods for the synthesis of a compound, and people can choose the synthesis method that suits their own laboratory according to the actual situation. 289042-10-0, name is N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, molecular formula is C28H29FN3O3PS, The compound is widely used in many fields, so it is necessary to find a new synthetic route. The downstream synthesis method of this compound is introduced below. category: pyrimidines

A mixture of DPPO (19.17 g) and THF (227 ml) were warmed briefly to 40 C. until a clear solution had formed then inerted by the sequential application of vacuum and nitrogen (5 cycles). The mixture was immersed in an acetone/CO2 bath cooling the contents to -75 C. Sodium bis(trimethylsilyl)amide (37.4 ml of 1.0 M solution in THF) was added to the reaction mixture over 10 minutes from a pressure equalising dropping funnel maintaining the temperature below -74 C and forming a red solution of the anion. THF (10 ml) was rinsed through the dropping funnel into the mixture and the mixture stirred a further 1 hour at -76 C forming a red suspension. BFA (80 ml of 13.5% w/w toluene solution) was added in portions to the suspension over 20 minutes from a pressure equalising dropping funnel maintaining the temperature below -73 C. Toluene (20 ml) was rinised through the dropping funnel into the mixture and the mixture stirred a further 15 minutes at -76 C. The chilling bath was lowered and the suspension allowed to warm to 10 C over 1.5 hours. Glacial acetic acid (3.21 g) in water (15 g) was added in one portion raising the temperature to 18 C and dissolving all solids and the mixture was stirred a further 5 minutes. The mixture was concentrated by distillation at atmospheric pressure (jacket 110 C) to a temperature of 94 C collecting a total of 274 ml distillates. The concentrated mixture was cooled to 40 C, water (40 ml) was added and the mixture stirred for 5 minutes then allowed to settle for 15 minutes. The lower aqueous phase was discarded. Sodium hydrogen carbonate (2.99 g) in water (40 ml) was added and the mixture stirred for 5 minutes then allowed to settle for 15 minutes. The lower aqueous phase was discarded. Water (30 ml) was added and the mixture stirred for 5 minutes then allowed to settle for 15 minutes. The lower aqueous phase was discarded. The organic phase was transferred to a distillation apparatus with toluene (20 ml) and concentrated by distillation at atmospheric pressure (jacket 125-130 C) to a temperature of 116 C collecting 85 ml distillates. Vacuum was applied (400-500 mbar) and a further 16.5 ml distillates collected to a temperature of 111 C. The vacuum was released and the concentrated mixture allowed to cool to 80 C. Warm MeOH (140 ml, 50 C) was added with rapid stirring and the batch allowed to self-cool to 20 C over 30 minutes during which time a solid was deposited. The suspension was further cooled to 2 C for 30 minutes then the solid was collected by filtration on a sinter and pulled as dry as possible. The solid was washed with cold MeOH (60 ml, 2C.) and again pulled as dry as possible then transferred to a vacuum oven and dried overnight (50 C, 200 mbar); giving BEM (14.01 g, 67.7%). 1H NMR (CDCl3, 270 MHz) 7.65 [m, 2H, ArH], 7.09 [m, 2H, ArH], 6.52 [dd, 1H, ArCH=CH], 5.47 [dd, 1H, ArCH=CH], 3.57, 3.50 [2 x s, 6H, NCH3, SO2CH3], 3.38 [hept., 1H, ArCHMe2], 2.45, 2.30 [2x dd, 2H, CH2CO2tBu], 1.55, 1.13 [dt, dd, 2H, acetonide CH2], 1.50, 1.40 [2x s, 6H, acetonide C(CH3)2], 1.45 [s, 9H, CO2C(CH3)3], 1.27 [dd 6H, ArCH(CH3)2]

With the rapid development of chemical substances, we look forward to future research findings about 289042-10-0.

Reference:
Patent; AstraZeneca AB, AstraZeneca AB; Shionogi & amp Co., Ltd.; US2004/49036; (2004); A1;,
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia

The origin of a common compound about 289042-10-0

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Adding a certain compound to certain chemical reactions, such as: 289042-10-0, N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, can increase the reaction rate and produce products with better performance than those obtained under traditional synthetic methods. Here is a downstream synthesis route of the compound, Safety of N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide, blongs to pyrimidines compound. Safety of N-(5-((Diphenylphosphoryl)methyl)-4-(4-fluorophenyl)-6-isopropylpyrimidin-2-yl)-N-methylmethanesulfonamide

Sodium bis (trimethylsilyl) amide (1 M in tetrahydrofuran, 23 mi) is added dropwise, AT-74C, to a suspension of the compound of formula (38) (12 g, 22.3 MMOL) in tetrahydrofuran (130 M .). STIRRING is carried out at-74C for 1 hour and then a solution of the compound of formula (40) (6.9 g, 26.8 MMOI) in toluene (28 ML) is added dropwise. Stirring is then carried out AT-74C for 1 hour, then warming to 10C over the course of 1 hour and stirring for a further 1 hour at that temperature. A mixture of acetic acid (2 ml) and water (8.4 ML) is added, at 10C, to the resulting yellow suspension and stirring is carried out at room temperature for 5 minutes. The tetrahydrofuran is then distilled off, and, at 40C, 45 ml of water are added to the reaction mixture and vigorous stirring is carried out for 5 minutes. The aqueous phase is separated off and a solution of sodium hydrogen carbonate (2.27 G) in water (45 ml) is added to the organic phase. Vigorous stirring is again carried out for 5 minutes and then the aqueous phase is removed again. The organic phase is diluted with 250 ML of toluene, washed successively with water and saturated sodium chloride solution and dried (using NA2SO4). The salt mixture is filtered off and the filtrate is concentrated by evaporation. The concentrated residue is then purified by column chromatography on silica gel (hexane: ethyl acetate 8: 1). 2.59 G (61 %) of the desired product (39) can be obtained in the form of colourless crystals. ‘H NMR (300 MHz, CDCI3) : 0.91-1. 08 (m, 1H) ; 1.20 (d, J = 6. 7 HZ, 6H); 1. 24 (S, 3H); 1. 38 (S, 9H); 1.41 (S, 3H); 1.41-1. 56 (m, 1 H) ; 2.21 (dd, J = 15. 2, 7. 9, 1 H) ; 2. 35 (dd, J = 15. 0, 5. 0 HZ, 1H) ; 3. 27-3. 37 (m, 1H) ; 3. 43 (S, 3H); 3.52 (S, 3H); 4.17-4. 24 (m, 1H) ; 4. 47-4. 53 (m, 1H) ; 5.43 (dd, J = 16.4, 5.5 Hz, 1H) ; 6.55 (dd, J = 16.1, 0.8 Hz, 1H) ; 7.24 (dd, J = 8.8, 8.8 HZ, 2H); 7.65 (dd, J = 8.8, 5.6 Hz, 2H). 13C NMR (75 MHz, CDCI3) : 18.7, 20.6, 20.7, 27.0, 29.0, 30.9, 32.0, 35.0, 41.3, 41.4, 64.8, 68.1, 79.6, 97.7, 113.7 (JCF = 21.7 Hz), 120.0, 122.0, 131. 0 (JCF = 8.4 Hz), 133.2 (JCF = 3.2 Hz), 136.3, 156.0, 162.0 (JCF = 249 Hz), 162.2, 168.8, 173.6.

The synthetic route of 289042-10-0 has been constantly updated, and we look forward to future research findings.

Reference:
Patent; CIBA SPECIALTY CHEMICALS HOLDING INC.; WO2004/103977; (2004); A2;,
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia