Share a compound : 144690-92-6

The chemical industry reduces the impact on the environment during synthesis, Triphenyl methyl olmesartan, , I believe this compound will play a more active role in future production and life.

Triphenyl methyl olmesartan, A common heterocyclic compound, its traditional synthetic route has been very mature, but the traditional synthetic route has various shortcomings, such as complicated route, low yield, poor purity, etc., below Introduce a new synthetic route.”144690-92-6

Trityl olmesartan medoxomil (8 g, 10 mmol) is dissolved in THF (25 ml) and diethyl ether (25 ml) and 48 % aqueous hydrobromic acid (3.5 ml, 30 mmol) is added. The mixture is stirred for 1 hour at room temperature and then 1 hour at 0 C. The precipitate is filtered, washed with cold THF (20 ml) and dried overnight in vacuum at room temperature to give 5.0 g of olmesartan medoxomil hydrobromide Form B

The chemical industry reduces the impact on the environment during synthesis, Triphenyl methyl olmesartan, , I believe this compound will play a more active role in future production and life.

Reference£º
Patent; LEK Pharmaceuticals d.d.; EP2022790; (2009); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Analyzing the synthesis route of 144690-92-6

The chemical industry reduces the impact on the environment during synthesis, Triphenyl methyl olmesartan, , I believe this compound will play a more active role in future production and life.

144690-92-6, A common heterocyclic compound, its traditional synthetic route has been very mature, but the traditional synthetic route has various shortcomings, such as complicated route, low yield, poor purity, etc., below Introduce a new synthetic route.”144690-92-6

Example 236.0 g (50.3 mmol) ethyl 4-(1-hydroxy-1-methylethyl)-2-propyl-1-{4-[2-(trityltetrazol-5-yl)-phenyl]phenyl}-methyl imidazole-5-carboxylate (Va) and 3.0 g (75.4 mmol) of NaOH were suspended in 413 ml dimethylacetamide. The suspension was then stirred at room temperature for 20 h and after that 6.9 g (50.3 mmol) of K2CO3, were added. The mixture was cooled to 0 C. and solution of 15.4 g (70.4 mmol) 4-chloromethyl-5-methyl-2-oxo-1,3-dioxolene in 39 ml of dimethylacetamide were slowly added. The mixture was slowly heated to 50 C. and stirred at this temperature for 2 h. After esterification was completed, the mixture was cooled to 10 C. and poured into a mixture of 625 ml of ethyl acetate and 625 ml of 10% NaCl, and stirred at 25 C. for 15 min. The phases were separated and organic phase was washed 2¡Á with 500 ml of 10% NaCl, dried over Na2SO4 and filtered. The filtrate was concentrated up to ? (approximately 270 g) at reduced pressure.To the resulting solution, 80 ml of ethanol and 8.3 ml (100 mmol) of conc. HCl were added and stirred at 24-26 C. for 3 h. To the cooled mixture 600 ml of water was added and pH of the suspension was estimated to 5 by addition of 5 M NaOH. The phases were stirred for 15 min and separated. Water phase was reextracted with 150 ml of ethyl acetate. Collected organic phases were dried over Na2SO4, filtered and concentrated under reduced pressure. 560 ml of ethyl acetate were added and the mixture was evaporated again. After that, 300 ml of ethyl acetate were added and the mixture was cooled to 20 C. and stirred for 1 h, filtered off and washed with 20 ml of fresh ethyl acetate. The yield of the product (I) was 21 g (75%).

The chemical industry reduces the impact on the environment during synthesis, Triphenyl methyl olmesartan, , I believe this compound will play a more active role in future production and life.

Reference£º
Patent; KRKA; US2009/131680; (2009); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Extracurricular laboratory: Synthetic route of Triphenyl methyl olmesartan

With the rapid development of chemical substances, we look forward to future research findings about 144690-92-6

144690-92-6, A common heterocyclic compound, its traditional synthetic route has been very mature, but the traditional synthetic route has various shortcomings, such as complicated route, low yield, poor purity, etc., below Introduce a new synthetic route.”144690-92-6

Example 1 – formation of olmesartan medoxomil hydrobromide Form A Trityl olmesartan medoxomil (8 g, 10 mmol) is added to a mixture of acetone (35 ml) and water (10 ml). To the resulting suspension 48 % aqueous hydrobromic acid (3.5 ml, 30 mmol) is added. The mixture is then stirred at room temperature for 2 h. Water (130 ml) is added and the mixture is stirred for additional 30 minutes. The precipitated triphenylmethanol is filtered off. The filtrate is concentrated in vacuum at 40 C to 100 ml, and then stirred vigorously for 1 h at room temperature and then additional 30 minutes at 0 C. The precipitate is filtered to give 4.7 g of olmesartan medoxomil hydrobromide Form A (97.6 % area); Example 9 – formation of olmesartan medoxomil Trityl olmesartan medoxomil (18 g, 22.5 mmol) (95.5 % area) is added to a mixture of acetone (68 ml) and water (22 ml). To the resulting suspension 48 % aqueous hydrobromic acid (8.5 ml, 72 mmol) is added. The mixture is then stirred at room temperature for 2 h. Water (180 ml) is added and the mixture is stirred for additional 15 minutes. The precipitated triphenylmethanol is filtered off. The filtrate is concentrated in vacuo at 40 C to 200 ml and then stirred vigorously for 20 minutes at room temperature and then additional 40 minutes at 0 C. The precipitate is filtered and dried overnight in vacuum at 25 C to give 12.9 g of olmesartan medoxomil hydrobromide Form A. This was added to THF (150 ml) and the mixture is stirred vigorously for 30 minutes at room temperature and 1 hour at 0 C. The precipitate is filtered and washed with 25 ml of cold THF to give olmesartan medoxomil hydrobromide Form B, which is then dissolved in a mixture of water (100 ml) and acetone (50 ml). To a clear solution saturated aqueous NaHCO3 is added to raise pH to 5.6. The mixture is stirred for 1 hour at room temperature and 2 hours at 0 C. The precipitate is filtered, washed with water and then recrystallised from acetonitrile (87 ml) to give 8.3 g of olmesartan medoxomil (99.74 % area), 144690-92-6

With the rapid development of chemical substances, we look forward to future research findings about 144690-92-6

Reference£º
Patent; LEK Pharmaceuticals d.d.; EP2022790; (2009); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

A new synthetic route of Triphenyl methyl olmesartan

With the synthetic route has been constantly updated, we look forward to future research findings about Triphenyl methyl olmesartan,belong Dioxole compound

144690-92-6, A common heterocyclic compound, its traditional synthetic route has been very mature, but the traditional synthetic route has various shortcomings, such as complicated route, low yield, poor purity, etc., below Introduce a new synthetic route.”144690-92-6

Trityl olmesartan medoxomil (8 g, 10 mmol) is dissolved in THF (50 ml) and 48 % aqueous hydrobromic acid (3.5 ml, 30 mmol) is added. The mixture is stirred for 1 hour at room temperature and then 1 hour at 0 C. The precipitate is filtered, washed with cold THF (20 ml) and dried overnight in vacuum at room temperature to give 5.7 g of olmesartan medoxomil hydrobromide Form B (98.6 % area)

With the synthetic route has been constantly updated, we look forward to future research findings about Triphenyl methyl olmesartan,belong Dioxole compound

Reference£º
Patent; LEK Pharmaceuticals d.d.; EP2022790; (2009); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

The important role of 144690-92-6

With the synthetic route has been constantly updated, we look forward to future research findings about Triphenyl methyl olmesartan,belong Dioxole compound

144690-92-6, A common heterocyclic compound, its traditional synthetic route has been very mature, but the traditional synthetic route has various shortcomings, such as complicated route, low yield, poor purity, etc., below Introduce a new synthetic route.”144690-92-6

The reaction flask was charged with 400 g of compound VII (0.50 mol) and 70% aqueous acetic acid solution of 3200 ml, Reaction was carried out at 50 C for 2 hours. After the completion of the reaction, the solvent was concentrated and concentrated, and ammonia was added to the residue.PH = 7, extracted with 1400 ml of ethyl acetate, the ethyl acetate layer was washed with water, and finally with anhydrous sodium sulfateDried; filtered, the filtrate was concentrated to dryness and the residue was recrystallized from ethanol to give the compound I pure product 256.1G, yield: 91.79%.

With the synthetic route has been constantly updated, we look forward to future research findings about Triphenyl methyl olmesartan,belong Dioxole compound

Reference£º
Patent; Hunan Ouya biological Co. Ltd.; Lin, kaizhao; (19 pag.)CN103304550; (2016); B;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Share a compound : 144690-92-6

Chemical properties determine the actual use. Each compound has specific chemical properties and uses. We look forward to more synthetic routes in the future to expand reaction routes of Triphenyl methyl olmesartan, 144690-92-6

144690-92-6, In the next few decades, the world population will flourish. As the population grows rapidly and people all over the world use more and more resources, all industries must consider their environmental impact. Triphenyl methyl olmesartan, cas is 144690-92-6,the Dioxole compound, it is a common compound, a new synthetic route is introduced below.

Example 8; Olmesartan medoxomil (V); Water (10 g) was added to a solution of the starting substance (III; 20 g) in acetone (50 ml), and the mixture was heated to a mild boil for 14 h. After the reaction was completed, the mixture was cooled to 0 0C, and the formed trityl alcohol was sucked off. After concentration, a crude product was obtained, which was extracted with ethyl acetate (70 ml). After evaporating the extract and crystallizing from acetone, 10.6 g (76 %) of the product with an HPLC purity of 97.0 % was obtained. Recrystallization from ethyl methyl ketone gave 10.2 g (73 %) of the product with an HPLC purity of 99.3 %; m.p. 175-177 C.

Chemical properties determine the actual use. Each compound has specific chemical properties and uses. We look forward to more synthetic routes in the future to expand reaction routes of Triphenyl methyl olmesartan, 144690-92-6

Reference£º
Patent; ZENTIVA, A.S.; WO2007/48361; (2007); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Share a compound : 144690-92-6

The chemical industry reduces the impact on the environment during synthesis,144690-92-6,Triphenyl methyl olmesartan,I believe this compound will play a more active role in future production and life.

144690-92-6, In the next few decades, the world population will flourish. As the population grows rapidly and people all over the world use more and more resources, all industries must consider their environmental impact. Triphenyl methyl olmesartan, cas is 144690-92-6,the Dioxole compound, it is a common compound, a new synthetic route is introduced below.

Example 236.0 g (50.3 mmol) ethyl 4-(1-hydroxy-1-methylethyl)-2-propyl-1-{4-[2-(trityltetrazol-5-yl)-phenyl]phenyl}-methyl imidazole-5-carboxylate (Va) and 3.0 g (75.4 mmol) of NaOH were suspended in 413 ml dimethylacetamide. The suspension was then stirred at room temperature for 20 h and after that 6.9 g (50.3 mmol) of K2CO3, were added. The mixture was cooled to 0 C. and solution of 15.4 g (70.4 mmol) 4-chloromethyl-5-methyl-2-oxo-1,3-dioxolene in 39 ml of dimethylacetamide were slowly added. The mixture was slowly heated to 50 C. and stirred at this temperature for 2 h. After esterification was completed, the mixture was cooled to 10 C. and poured into a mixture of 625 ml of ethyl acetate and 625 ml of 10% NaCl, and stirred at 25 C. for 15 min. The phases were separated and organic phase was washed 2¡Á with 500 ml of 10% NaCl, dried over Na2SO4 and filtered. The filtrate was concentrated up to ? (approximately 270 g) at reduced pressure.To the resulting solution, 80 ml of ethanol and 8.3 ml (100 mmol) of conc. HCl were added and stirred at 24-26 C. for 3 h. To the cooled mixture 600 ml of water was added and pH of the suspension was estimated to 5 by addition of 5 M NaOH. The phases were stirred for 15 min and separated. Water phase was reextracted with 150 ml of ethyl acetate. Collected organic phases were dried over Na2SO4, filtered and concentrated under reduced pressure. 560 ml of ethyl acetate were added and the mixture was evaporated again. After that, 300 ml of ethyl acetate were added and the mixture was cooled to 20 C. and stirred for 1 h, filtered off and washed with 20 ml of fresh ethyl acetate. The yield of the product (I) was 21 g (75%).

The chemical industry reduces the impact on the environment during synthesis,144690-92-6,Triphenyl methyl olmesartan,I believe this compound will play a more active role in future production and life.

Reference£º
Patent; KRKA; US2009/131680; (2009); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Application of 1-Methylimidazolidin-2-one

144690-92-6, In the field of chemistry, the synthetic routes of compounds are constantly being developed and updated. I will also mention this compound in other articles.,144690-92-6 ,Triphenyl methyl olmesartan, other downstream synthetic routes, hurry up and to see

It is a common heterocyclic compound, the Dioxole compound, Triphenyl methyl olmesartan, cas is 144690-92-6 its synthesis route is as follows.

A solution of MTT in an organic solvent and water (20%) was heated for 4-8 hrs at reflux. When the solvents were either acetonitrile (ACN), isopropyl alcohol (IPA) or t-butanol (t-BuOH), 1 volume of water was added, and the reaction was stirred until the amount of MTT was less than 2%. The mixture was evaporated to dryness. Ethyl acetate (EtOAc, 1 volume) was added to the residue and then evaporated again (twice). The resulting solid was dissolved in EtOAc (12 vol) and heated to reflux. The solution was cooled (2 C.) and stirred for 2 hrs. The product was filtered, washed (EtOAc, 1 vol), and dried on vacuum (45 C.). Table 1 shows the process details with different organic solvents: TABLE 1 Total solvent Time Solvent(s) Volume Temperature ( C.) (hrs) pH ACN:H2O 5:1 + 1 85 7 4.89-4.3 IPA:H2O 5:1 + 1 85 7 4.62-4.25t-BuOH:H2O 5:1 + 1 85 7 4.78-4.28n-propanol:H2O 5:1 reflux 2.5 4.3n-BuOH:H2O 5:1 110 2.5 4.412-BuOH:H2O 5:1 100 3 4.5iso-penthanol:H2O 5:1 100 3 5DMA:H2O 5:1 100 4 4.5DMF:H2O 5:1 100 4 4.5

144690-92-6, In the field of chemistry, the synthetic routes of compounds are constantly being developed and updated. I will also mention this compound in other articles.,144690-92-6 ,Triphenyl methyl olmesartan, other downstream synthetic routes, hurry up and to see

Reference£º
Patent; Hedvati, Lilach; Pilarsky, Gideon; Shenkar-Garcia, Natalia; US2006/148870; (2006); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

The important role of 144690-92-6

The chemical industry reduces the impact on the environment during synthesis,144690-92-6,Triphenyl methyl olmesartan,I believe this compound will play a more active role in future production and life.

144690-92-6, In the next few decades, the world population will flourish. As the population grows rapidly and people all over the world use more and more resources, all industries must consider their environmental impact. Triphenyl methyl olmesartan, cas is 144690-92-6,the Dioxole compound, it is a common compound, a new synthetic route is introduced below.

To TOLM (75 g) were successively added acetic acid_water=1:1 (330 mL, 4.4 vol) and concentrated sulfuric acid (5.4 mL, 1.08 eq). The obtained mixture was stirred at 25C – 30C for 1 hr. Using TLC (thin layer chromatography) (TLC eluent: 10% methanol/methylene chloride, detection method: UV), complete disappearance of TOLM was confirmed. [0309] The reaction mixture was filtered and insoluble trityl alcohol was removed. The aqueous layer was adjusted to pH 2 – 3 by adding 25% aqueous sodium carbonate solution (initial pH of the reaction mixture was 4 – 4.5). The reaction mixture was stirred for 5 min, methylene chloride (225 mL, 3 vol) was added thereto, and the mixture was stirred for 5 min. Stirring was stopped, and the mixture was stood and partitioned. The aqueous layer was extracted with methylene chloride (2×225 mL, 2×3 vol), the extracts were combined with the organic layer, deionized water (375 mL, 5vol) was added, and the mixture was stirred for 5 min. Stirring was stopped, and the mixture was stood for 5 min and partitioned. To the organic layer was added saturated brine (375 mL, 5 vol), and the mixture was stirred for 5 min, left standing and partitioned. The organic layer was concentrated under reduced pressure at 40C – 45C to give crude OLM MDX (49 g, 93%) as a pale-yellow solid.To the crude OLM MDX (49 g, 1 eq) obtained in the above-mentioned (7) was added acetone (735 mL, 15 vol), and the mixture was stirred at 55C – 60C for 10 min. Furthermore, the reaction mixture was stirred at the same temperature for 15 min, and acetone was evaporated under normal pressure. Heating was stopped when a solid was precipitated, and the mixture was cooled to 25C – 30C. The precipitated solid was collected by filtration and dried with suction for 30 min to give OLM MDX (41 g, 83%). [0311] To the OLM MDX obtained above was added isopropyl alcohol (164 mL, 4 vol), and the mixture was heated to 55C – 60C, and stirred at 55C – 60C for 1 hr. Heating was stopped and the mixture was gradually cooled to 25C – 30C, and stirred at 25C – 30C for 30 min. The precipitated solid was filtered and dried with suction to give OLM MDX (41 g, 100%). [0312] The OLM MDX (41 g) obtained above and acetone (about 1 L) were heated to 55C – 60C, and stirred at 55C – 60C for 25 min. Acetone was evaporated under normal pressure until the mixture became cloudy, and the mixture was gradually cooled to 25C – 30C. The precipitated solid was collected by filtration and dried with suction for 30 min to give OLM MDX (34 g, 83%). The HPLC purity of the obtained OLM MDX was 99.66%. [0313] The OLM MDX (44 g) obtained above was dissolved in acetone (about 1.2 L), and the mixture was stirred at 55C-60C for 10 min. Acetone was evaporated under normal pressure until the solution became cloudy, and the solution was gradually cooled to 25C – 30C. The precipitated solid was collected by filtration, dried with suction for 30 min, blast dried for 1 hr, and further blast dried at 40C – 45C for 5 hr to give OLM MDX (36 g) as a white solid. The HPLC purity of the obtained OLM MDX was 99.8%.

The chemical industry reduces the impact on the environment during synthesis,144690-92-6,Triphenyl methyl olmesartan,I believe this compound will play a more active role in future production and life.

Reference£º
Patent; API Corporation; SEKI, Masahiko; EP2891650; (2015); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Downstream synthetic route of Triphenyl methyl olmesartan

144690-92-6, In the field of chemistry, the synthetic routes of compounds are constantly being developed and updated. I will also mention this compound in other articles.,144690-92-6 ,Triphenyl methyl olmesartan, other downstream synthetic routes, hurry up and to see

As a common heterocyclic compound, it belongs to Dioxole compound, name is Triphenyl methyl olmesartan, and cas is 144690-92-6, its synthesis route is as follows.

(4) the C48 H44 N6 O6 AMST – 6, acetone, water, sulfuric acid added to the reactor, the temperature rising to 30 C reaction 2.5 hours, adding water, 30 C continue to reaction 1.5 hours or more, when the raw material to achwhich isve the requirement of lowering the temperature to 5 C stirring 1 or more hours, filtering the triphenyl methanol, the filter cake is washed with water; mother liquor up to 50 C, add sodium bicarbonate, stirring 1 hour, filtration products, the filter cake is washed with water, 50 C decompression drying 12 hours or more to constant weight, to obtain omay sha tanzhi thick; said C48 H44 N6 O6 AMST – 6, acetone, water, sulfuric acid and sodium bicarbonate and the mass ratio of 700:1400:: 2101.4: 194.7: 373.5; (5) the crude product of olmesartan medoxomil and acetone is added to the reaction in the bottle, heat to reflux to totally dissolve, filter press, distilling off acetone, lowering the temperature to -10 C crystallization, filtration, acetone washing, 50 C drying productC29 H30 N6 O6 Olmesartan medoxomil, the crude with olmesartan medoxomil mass ratio of olmesartan medoxomil 448.4: 6500;

144690-92-6, In the field of chemistry, the synthetic routes of compounds are constantly being developed and updated. I will also mention this compound in other articles.,144690-92-6 ,Triphenyl methyl olmesartan, other downstream synthetic routes, hurry up and to see

Reference£º
Patent; Jiangxi Yong Tong Technology Co., Ltd.; Liu Zhongchun; (10 pag.)CN107311989; (2017); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem