Application of 2,3-Dihydrobenzo[b][1,4]dioxine-2-carboxylic acid

The chemical industry reduces the impact on the environment during synthesis,37830-90-3,4,5-Dimethyl-1,3-dioxol-2-one,I believe this compound will play a more active role in future production and life.

37830-90-3, 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. 4,5-Dimethyl-1,3-dioxol-2-one, cas is 37830-90-3,the Dioxole compound, it is a common compound, a new synthetic route is introduced below.

(1) Synthesis of 4-bromomethyl-5-methyl-1,3-dioxolen-2-one[the compound of formula (III) in which X is a bromine atom]: 3.42 g of 4,5-dimethyl-1,3-dioxolen-2-one (synthesised in accordance with Tetrahedron Letters, (1972), pages 1701-1704) was dissolved in 150 ml of carbon tetrachloride, and 5.34 g of N-bromosuccinimide and a catalytic amount of alpha,alpha’-azobisisobutyronitrile were added. The mixture was heated under reflux for 15 minutes. The reaction mixture was concentrated to half of its volume and the resulting insoluble matter was removed by filtration. Concentrating the filtrate gave a syrupy residue. The residue was distilled under reduced pressure to give a fraction boiling at 115¡ã to 120¡ã C./5 mm Hg which was 4.2 g (yield 73percent) of the captioned compound.

The chemical industry reduces the impact on the environment during synthesis,37830-90-3,4,5-Dimethyl-1,3-dioxol-2-one,I believe this compound will play a more active role in future production and life.

Reference£º
Patent; Kanebo Ltd.; US4455310; (1984); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Downstream synthetic route of Triphenyl methyl olmesartan

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 144690-92-6, Triphenyl methyl olmesartan

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.

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)

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 144690-92-6, Triphenyl methyl olmesartan

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

Some tips on 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.

1L glass reaction flask was added with 500ml of 75% acetic acid, 100.0g of intermediate 2 was added with stirring, and the mixture was heated to stirAfter 45-55 C, after 2 hours of incubation, reduce the temperature to 20-30 C, add 125ml of water, stir for 30 minutes, filter, filter cake with 100ml of 75% acetic acid, transfer the filtrate to 3L glass reaction bottle, The filtrate was successively added with 1000 ml of dichloromethane and 1000 ml of water, and the mixture was stirred and the organic layer was temporarily stored. The aqueous layer was extracted with 500 ml of dichloromethane, and the organic layer was combined. The organic layer was washed with 1000 ml of water, and the organic layer was washed with 5% carbonic acid. The aqueous sodium hydrogen solution was adjusted to rhoEta=6.0~7.0 (about 600 ml), and the organic layer was washed with 500 ml of water, and the organic layer was separated. The organic layer was concentrated under reduced pressure at 30-40 C until no significant solvent was discharged, and 300 ml was added. Ethyl acetate was stirred and crystallized at 20-30 C for 1 hour, filtered, and the filter cake was rinsed with 300 ml of ethyl acetate. The filter cake was blast dried at 40-50 C for 8 hours to obtain a white solid 60.0 g. (product), yield 86.0%, HPLC: 99.0%.

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; Jiashi (Hunan) Pharmaceutical Technology Co., Ltd.; Dai Yongzhi; Liu Hu; Zhu Laifa; Cai Jian; (8 pag.)CN108341804; (2018); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

The important role of 144690-92-6

With the complex challenges of chemical substances, we look forward to future research findings about Triphenyl methyl olmesartan

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

Example 4; Olmesartan medoxomil (V); The starting substance (III; 10 g) was dissolved in acetone (50 ml), and, after adding water (25 g), the mixture was heated to a mild boil for 14 h. After evaporating acetone and adding ethyl acetate (50 ml), water was separated, and the organic layer was again washed with water (10 ml). The extract was concentrated and evaporated with toluene (50 ml) once more, the residue was dissolved in ethyl acetate (20 ml) and toluene (20 ml). The mixture was concentrated to 25 ml and allowed to crystallize under stirring for 30 min; after cooling to 15 C, the insoluble portion was sucked off and washed with ethyl acetate. 6.5 g of the product was obtained, which, after recrystallization from ethanol, gave 6 g (86 %) of the product with an HPLC purity of 98.7 %.By further recrystallization from ethyl acetate and cyclohexane, 5.1 g of a sample with an HPLC purity of 99.6 % was obtained. 1H NMR (250 MHz, CDCl3) delta: 0.82 (3H, t, J = 7.5 Hz); 1.50 (6H, s); 1.54-1.63 (2H, m); 2.07 (3H, s); 2.48 (2H, t, J = 7.5 Hz); 4.86 (2H, s); 5.32 (2H, s); 6.70 (2H, d, J = 8 Hz); 6.99 (2H, d, J = 8 Hz); 7.3-7.5 (3H, m); 7.72 (IH, dd, J = 1.7 Hz).

With the complex challenges of chemical substances, we look forward to future research findings about Triphenyl methyl olmesartan

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

Analyzing the synthesis route of 37830-90-3

The chemical industry reduces the impact on the environment during synthesis,37830-90-3,4,5-Dimethyl-1,3-dioxol-2-one,I believe this compound will play a more active role in future production and life.

37830-90-3, 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. 4,5-Dimethyl-1,3-dioxol-2-one, cas is 37830-90-3,the Dioxole compound, it is a common compound, a new synthetic route is introduced below.

PREPARATION 2 Preparation of 4-bromomethyl-5-methyl-1,3-dioxole-2-one According to the method described in Liebigs. Ann. Chem., 1977, 27-32 4,5-dimethyl-1,3-dioxole-2-one (500 mg, 4.38 mmol) and N-bromosuccinimide (0.78 g, 4.38 mmol) were heated under reflux in dry carbon tetrachloride in the presence of alpha-alpha’-azobisisobutyronitrile (7.5 mg) for 20 minutes. The reaction mixture was concentrated under reduced pressure to half the volume, and the precipitated solid was filtered by suction. After removing the solvent from the filtrate, the residue was analyzed by gas chromatography. The obtained mixture (792 mg), contained 70percent of the desired title compound and used for the subsequent reactions.

The chemical industry reduces the impact on the environment during synthesis,37830-90-3,4,5-Dimethyl-1,3-dioxol-2-one,I believe this compound will play a more active role in future production and life.

Reference£º
Patent; Sawai Pharmaceutical Co., Ltd.; US5006548; (1991); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

The important role of 144690-92-6

With the complex challenges of chemical substances, we look forward to future research findings about Triphenyl methyl olmesartan

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

To 12.0g (15 mmol) of tritylolmesartan medoxomil prepared according to examples 1 or 2 69 ml of ethyl acetate was added and after that 12 ml of methanol and 2.67 ml (32 mmol) of conc. HCl were added. The mixture was stirred at room temperature for 2h and then the mixture was cooled to below 2C. To the cooled mixture 71 ml of 1% NH3 was slowly added to adjust pH to 4.93. The phases were separated and water phase was reextracted with 20 ml of ethyl acetate. Collected organic phases were dried over Na2SO4, filtered and concentrated under reduced pressure to approximately 15g of oily residue. To this residue 15 ml of ethyl acetate were added and the mixture was cooled to 20 C and stirred at this temperature for 2h, and then cooled under 0C and stirred at this temperature for 1hour. The product was filtered off and washed with 5 ml of fresh ethyl acetate and dried. Yield: 7.55 g (90%). HPLC: 99.81 % of the product, all individual impurities under 0.10%.

With the complex challenges of chemical substances, we look forward to future research findings about Triphenyl methyl olmesartan

Reference£º
Patent; Krka Tovarna Zdravil, D.D., Novo Mesto; EP2334668; (2011); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Analyzing the synthesis route of 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 144690-92-6, Triphenyl methyl olmesartan

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.

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%.

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 144690-92-6, Triphenyl methyl olmesartan

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

Application of (S)-(1-Ethylpyrrolidin-2-yl)methanamine

#REF!

As a common heterocyclic compound, it belongs to Dioxole compound, name is 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, and cas is 80841-78-7, its synthesis route is as follows.

Example 1; Preparation of olmesartan medoxomilTo dimethyl acetamide (300 ml) was added 4-(1-hydroxy-1-methylethyl)-2-propyl imidazol- 5-carboxylic acid ethyl ester (50 gms) and powdered sodium hydroxide (26 gms). To this, 4-[2-(trityltetrazol-5-yl)phenyl]benzyl bromide (135 gms) was charged at 45-500C. The contents were stirred for 5 hours at 45-500C. Diisopropylethyl amine (100 ml) was charged to the reaction mass at 40-450C. A solution of 5-methyl-2-oxo-1 , 3-dioxane-4-yl)methyl chloride (80 gms) diluted with dimethyl acetamide (160 ml) was slowly added to the reaction mass at 40-450C over a period of 1 hour. The contents were heated to 60-650C and maintained for 4 hours. The reaction mass was then cooled to 30-350C and neutralized with concentrated hydrochloride acid. The reaction mass was filtered to remove inorganic impurities, charcoalized using charcoal (10 gms) andstirred for 30 minutes at 40-450C. The reaction mass was filtered over hyflo. The clear filtrate was acidified with hydrochloric acid (100 ml) slowly at 25-30C. The contents were stirred at 60C for 1 hour. The reaction mass was chilled to 0-5C and filtered to remove tritanol. The reaction mass was concentrated under reduced pressure. The residue was quenched with water (500ml), neutralized with base and extracted in dichloromethane (500 ml). The clear dichloromethane extract was then concentrated under reduced pressure and stripped off with acetone. The residue thus obtained was isolated from acetone (250 ml) to give 55 gms of the title compound. Chromatographic purity- > 99%; Example 2Preparation of olmesartan medoxomilTo dimethyl acetamide (600 ml) was added 4-(1-hydroxy-1-methylethyl)-2-propyl imidazol- 5-carboxylic acid ethyl ester (100 gms) and powdered potassium hydroxide (50 gms). To this was charged 4-[2-(trityltetrazol-5-yl)phenyl]benzyl bromide (270 gms) at 45-50C. The contents were stirred for 5 hours at 45-50C. Diisopropylethyl amine (200 ml) was charged to the reaction mass at 40-450C. To this was slowly added a solution of 5-methyl-2-oxo- 1 ,3-dioxane-4-yl)methyl chloride (160 gms) diluted with dimethyl acetamide (320 ml) at 40- 45C over a period of 1 hour. The contents were heated to 60-650C and maintained for 4 hours. The reaction mass was then cooled to 30-350C and was neutralized with concentrated hydrochloride acid. The reaction mass was filtered to remove inorganic impurities. The reaction mass was charcoalized using charcoal (20 gms) and was stirred for 30 minutes at 40-450C. The reaction mass was filtered over hyflo. The clear filtrate was acidified with hydrochloric acid (200 ml) slowly at 25-300C. The contents were stirred at 60C for 1 hour. The reaction mass was chilled to 0-50C and was filtered to remove tritanol. The reaction mass was concentrated under reduced pressure. The residue was quenched with water (1000 ml), neutralized with base and extracted in dichloromethane (1000 ml). The clear dichloromethane extract was then concentrated under reduced pressure, stripped off with acetone. The residue thus obtained was isolated from the acetone (500 ml) to give 110 gms of the title compound. Chromatogrphic purity- > 99%; Example 4Preparation of trityl olmesartan medoxomilTo dimethyl acetamide (300 ml) was added 4-(1-hydroxy-1-methylethyl)-2-propyl imidazol- 5-carboxylic acid ethyl ester (50 gms) and powdered potassium hydroxide (25 gms). To this was charged 4-[2-(trityltetrazol-5-yl)phenyl]benzyl bromide (135 gms) at 45-500C. The contents were stirred for 5 hours at 45-500C. Diisopropylethyl amine (100 ml) was charged to the reaction mass at 40-45C. To this was slowly added a solution of 5-methyl-2-oxo- 1 ,3-dioxane-4-yl) methyl chloride (80 gms) diluted with dimethyl acetamide (160 ml) at 40- 45C over a period of 1 hour. The contents were heated to 60-650C and maintained for 4 hours. The reaction mass was then cooled to 30-350C. and was neutralized with concentrated hydrochloride acid. The reaction mass was filtered to remove inorganics. The reaction mass was charcoalized using charcoal (10 gms) and was stirred for 30 minutes at 40-450C. The reaction mass was filtered over hyflo. The clear filtrate was quenched with purified water(200 ml)at 25-30C over a period of 3-4 hours. The contents were stirred at 25-300C for 30 minutes. Crude trityl olmesartan medoxomil was isolated by filtration, slurried in water (500 ml), centrifuged and dried under reduced pressure at 45-50C.

#REF!

Reference£º
Patent; CIPLA LIMITED; CURTIS, Philip, Anthony; WO2008/43996; (2008); A2;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

The important role of 37830-90-3

#REF!

Name is 4,5-Dimethyl-1,3-dioxol-2-one, as a common heterocyclic compound, it belongs to Dioxole compound, and cas is 37830-90-3, its synthesis route is as follows.

4725 g of dichloroethane was added to the DMDO that was stirred up.1012.5g N-chlorosuccinimideAnd 45g benzoyl peroxide,Reaction temperature 90¡ãC, reaction time 5.5h,The crude product obtained DMDO-Cl 382.5g, a yield of 85.00percent; Step 3: Distillation: The DMDO-Cl crude product at -0.1MPa vacuum,Distilled at 110¡ãC to produce 326g of DMDO-ClThe purity by gas chromatography was 99.06percent.

#REF!

Reference£º
Patent; Puyang Tianyuan Biological Technology Co., Ltd.; Zhao Junxia; Wen Jiaogang; Wang Lixia; Lv Xiaoyong; Fu Jingchao; Liu Renhuan; Chen Yongzhuang; Wang Lina; (6 pag.)CN107892681; (2018); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Extracurricular laboratory: Synthetic route of 144690-92-6

#REF!

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

Into a 1000 mL four-necked flask equipped with a two-piece stirring blade having a diameter of 10 cm,50 g of trityl olmesartan medoxomil, 225 ml of acetic acid and 75 ml of water were added and stirred at 40 C. for 2 hours to carry out deprotection reaction.Subsequently, the reaction solution was cooled to 20 C. and stirred at 20 C. for 1 hour, and the precipitated triphenylmethanol was removed by vacuum filtration,To the obtained filtrate were added 250 ml of 10% sodium hydrogen carbonate and 500 ml of ethyl acetate, followed by vigorous stirring, and the aqueous layer was separated to obtain an organic layer containing olmesartan medoxomil.200 ml of ethyl acetate was distilled off from the organic layer, and the mixture was stirred at 20 to 30 C. for 1 hour. The precipitated solid was collected by filtration under reduced pressure as a wet body.The obtained wet body was dried at 40 C. for 14 hours to obtain 30 g of crystals of olmesartan medexomil (purity: 99.54%).

#REF!

Reference£º
Patent; TOKUYAMA CORPORATION; MORI, HIROYUKI; TANAKA, KENJI; (11 pag.)JP2015/74608; (2015); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem