Sources of common compounds: 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

To the flask was added 2000 g of acetone, 160 g of ethyl 4- (1-hydroxy-1-methylethyl) -2-propylimidazole-5-carboxylate (II), 150 g of K2CO3, 460 g of 4- [2- (Trityltetrazol-5-yl) phenyl] benzyl bromide (III), 20g KI, the temperature was raised to reflux, the reaction was incubated for 34-38 hours under stirring.Then add 102g KOH, reflux reaction 6 ~ 8h. Cool to 10 ~ 20 , add 170g DMDO-Cl, incubated for 30 ~ 60min.Heating to reflux, the reaction 22 to 26 hours.After the reaction was added 40g of diatomaceous earth, stirring for 30 to 60 minutes, suction filtration, 200g acetone rinse cake. To the filtrate was added 800g of drinking water and 200g of refined hydrochloric acid, the reaction at room temperature for 2 to 4 hours, filtered to remove by-product triphenylcarbinol. Dropping 10% K2CO3 aqueous solution, adjusting feedstock pH to 4, cooling to 10 ~ 20 , stirring crystallization 2h, filtration, the filter cake with a mixture of pre-cooled 45g acetone and 230g of drinking water washing and drying, to obtain Olmesartan Medoxomil 309 g, total yield 83.1% (relative to ethyl-4- (1-hydroxy-1-methylethyl) -2-propylimidazole-5- carboxylate (II)), purity: 99.27% of the main peak, 0.08% of the olmesartan acid, 0.14% of the triphenylmethanol, and 0.13% of the largest unidentified one.

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

Reference£º
Patent; Zhejiang Huahai Zhicheng Pharmaceutical Co., Ltd.; Zhejiang Huahai Pharmaceutical Co., Ltd.; Jin Congyang; Wang Jiquan; Zhang Wenling; Wang Peng; (10 pag.)CN107311990; (2017); A;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Research on new synthetic routes about 80841-78-7

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

Example 4; The reaction was carried out in the same manner as in Example 1 except that 4- (1-hydroxy-1-methylethyl) -2-propyl-1- {4- [2- (trityltetrazol-5-yl) phenyl] -carboxylic acid sodium salt (Chemical Formula 5) and 50 mL of N, N-dimethylacetamide were added, the temperature was adjusted to 5 to 10 DEG C and 4 g of potassium carbonate was added. A solution of 6.2 g of 4- (chloromethyl) -5-methyl-1,3-dioxol-2-one (Formula 6) in 6 mL of N, N-dimethylacetamide was added dropwise to the reaction portion, For 4 hours. After the reaction was completed, the reaction solution was cooled to 20 to 25 C, and then 220 mL of ethyl acetate, 30 g of salt, and 170 mL of purified water were sequentially added to the reaction mixture, followed by separation of the organic layer, followed by the addition of 30 g of salt and 170 mL of purified water . & Lt; / RTI & gt; 1 g of activated carbon and 20 g of anhydrous sodium sulfate were added to the organic layer, followed by stirring for 30 minutes to 1 hour, followed by filtration. The filtrate was concentrated under reduced pressure, and 100 mL of acetonitrile was added to the residue, followed by stirring at 50 to 55 DEG C for 1 hour. The crystals were cooled to 0 to 5 C., stirred for 2 hours, filtered, washed with 50 mL of isopropyl alcohol and dried to obtain 21.7 g (yield: 93%, purity: 99.96%) of tritylolemethanemethoxysilane

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

Reference£º
Patent; DONGBANG FTL CO., LTD; Song, Tae Hong; Jung, Hun Suk; Jang, Do Yeon; Moon, Chung Sun; Jung, Hee Jung; (18 pag.)KR101526249; (2015); B1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Research on new synthetic routes about 80841-78-7

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

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.

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

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

A new synthetic route of 80841-78-7

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

Example 3; Preparation of olmesartan medoxomilTo dimethyl acetamide (800 ml) was added 4-(1-hydroxy-1-methylethyl)-2-propyl imidazol- 5-carboxylic acid ethyl ester (100 gms) and powdered potassium carbonate (200 gms). To this was charged 4-[2-(trityltetrazol-5-yl)phenyl]benzyl bromide (300 gms) at 45-50C. The contents were stirred for 8-10 hours at 45-50C. The insolubles were filtered. The contents were cooled to 5-100C. Potassium tertiary butoxide (100 gms) was charged at a temperature below 45C. The reaction was maintained at 40-450C for 3 hrs. To this was slowly added 5-methyl-2-oxo-1 ,3-dioxane-4-yl) methyl chloride 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 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 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 was filtered to remove tritanol. The reaction mass was concentrated under reduced pressure. The residue was quenched with water (500 ml), neutralized with base and extracted in dichloromethane (500 ml).The clear dichloromethane extract was then concentrated under reduced pressure, stripped off with acetone. The residue thus obtained was isolated from the acetone (250 ml) to give 55 gms of the title compound. Chromatogrphic purity- > 99%

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

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

The origin of a common compound about 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

A solution containing about 46 g of compound 4 was taken, 3.5g sodium iodide was added, 280 mL N, N-dimethylformamide, 11.2g DMDO-Cl was slowly added dropwise, 30 Minute addition is completed. After dropping, Heated to 55 , Reaction for 7 hours, The reaction is completely over. filter, Remove insolubles, The filtrate was poured into 700mL of water, Extraction with ethyl acetate, The ethyl acetate layer was collected, dry, filter, The filtrate is concentrated. To the oily substance obtained after the concentration was added 200 mL of ethanol, Stirring, A white solid precipitation, Collect the solid, Washed with 50mL cyclohexane beating, 45.0 g of product was obtained, Two-step total yield of 80.6% The purity of the product was 98% by HPLC.

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

Reference£º
Patent; Disha Pharmaceutical Group Co., Ltd.; Zhang Zhaoxing; Zhang Hongqiang; Qin Litai; Li Wei; Li Zongwen; Xia Haijian; (6 pag.)CN103012382; (2016); B;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Sources of common compounds: 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

To a solution of the compound of Formula IV (5.0 g) in toluene (40 mL), dimethylacetamide (10 mL) is added, followed by addition of sodium hydroxide (1.2 g) and N,N-diisopropylamine (3.7 g) at 25-35C. The mixture is stirred at 40- 45C for 4 hours. 5-Methyl-2-oxo-(1 ,3-dioxolene-4-yl)methyl chloride (1.5 g) and tetrabutylammonium bromide (0.5 g) are added at 40-450C. The mixture is stirred at 60-70C for 8 hours. The mass is cooled to 25-35C, water (50 mL) is added, and the pH is adjusted to about 6-7 by adding 10% aqueous HCI. The layers are separated. The aqueous layer is extracted with toluene (25 mL). The organic layers are combined and washed with water (25 mL). The solvent is distilled under reduced pressure. Methanol (25 mL) is added to the residue. The mixture is cooled to 0-50C and stirred at that temperature for 45 minutes. The formed solid is filtered, washed with methanol (10 mL) and dried for 45 minutes under vacuum (yield 3.0 g).

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

Reference£º
Patent; DR. REDDY’S LABORATORIES LTD.; DR. REDDY’S LABORATORIES, INC.; KOLLA, Naveen Kumar; MANNE, Nagaraju; NAREDLA, Anitha; SHINDE, Sachin Gulabrao; WO2011/14611; (2011); A2;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Share a compound : 80841-78-7

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 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one reaction routes.

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.80841-78-7, 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one it is a common compound, a new synthetic route is introduced below.80841-78-7

Example 5; Preparation of trityl olmesartan medoxomilTo dimethyl sulphoxide (800 ml), sodium hydroxide powder (50 gms) was added under nitrogen atmosphere and stirred at 20-250C for 10 minutes. To this, 4-( 1 -hydroxy- 1- methylethyl)-2-propyl-imidazole-5-ethyl carboxylate (100 gms) was added at 20-250C. 5- (4′-bromomethyl-biphenyl)-2-yl-1 -trityl tetrazole (270 gms) was added slowly at 20-250C, and the reaction mass was stirred at 20-250C for 12 hours. Further 10% sodium hydroxide solution (100 ml) was added to the reaction mass at 20-250C. The temperature of the reaction mass was raised to 40-450C, the contents stirred at 40-450C for 2 hours and 5- methyl-2-oxo-1 ,3-dioxane-4-yl)methyl chloride (160 gms) was added slowly at 45-5O0C over a period of 45 minutes. The contents were stirred at 45-5O0C for 2 hours. The reaction mass was then cooled to 0-50C, stirred for 1 hour at 0-50C, filtered and slurried in water (1.0 It) at 40-450C for 1 hour, filtered at 4O0C and dried at 4O0C. To the dried material, ethyl acetate (2.5 It) was added, heated to 50-550C for complete dissolution, ethyl acetate was distilled off to 1.0 It stage under vacuum at 45-5O0C. The contents were cooled to 0-50C, stirred at 0-50C for 3 hours, filtered, washed with chilled methanol (100 ml) and dried under vacuum at 40-450C to give 250 gms of the title compound. Purity by HPLC : > 99%

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 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one reaction routes.

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

Sources of common compounds: 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

Example 5: The reaction part was charged with ethyl 4- (1-hydroxy-1-methylethyl) -2-propyl-1- {4- [2- (trityltetrazol-5-yl) phenyl] 22 g of 5-carboxylate (Formula 4), 3.1 g of sodium hydroxide and 90 mL of ethanol were added and the mixture was stirred at 20 to 25 C for 4 to 5 hours. When the reaction was completed, the reaction solution was concentrated. To the residue were added 50 mL of ethyl acetate and 50 mL of purified water. The mixture was stirred for 1 hour and then layered. The separated organic layer was washed twice with an aqueous solution containing 30 g of salt and 170 mL of purified water. 1 g of activated carbon and 20 g of anhydrous sodium sulfate were added to the organic layer, followed by stirring for 30 minutes to 1 hour, followed by filtration Respectively. After the filtrate was concentrated under reduced pressure, 50 mL of N, N-dimethylacetamide was added to the residue, the temperature was adjusted to 5 to 10 DEG C 4 g of potassium carbonate was added and 6.2 g of 4- (chloromethyl) -5-methyl-1,3-dioxol-2-one (Formula 6) was dissolved in N, N-dimethylacetamide 6 ML was added dropwise, and the mixture was reacted at 45 to 50 C for 4 hours with stirring. When the reaction is completed, the reaction solution is cooled to 20 to 25 After cooling, 220 mL of ethyl acetate, 30 g of salt and 170 mL of purified water were added successively. The organic layer was separated And then washed once more with an aqueous solution containing 30 g of salt and 170 mL of purified water. The organic layer was washed with 1 g of activated carbon, 20 g of sodium was added and stirred for 30 minutes to 1 hour, followed by filtration. The filtrate was concentrated under reduced pressure, and then acetone 100 mL of i-tril was added, and the mixture was stirred at 50 to 55 C for 1 hour. The crystals were cooled to 0 to 5 [deg.] C and stirred for 2 hours. Followed by washing with 50 mL of isopropyl alcohol, followed by drying to obtain 21.6 g (yield: 88%) of tritylolemecanemethoxysilane (formula 1a) Purity 99.97%) was obtained

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

Reference£º
Patent; DONGBANG FTL CO., LTD; Song, Tae Hong; Jung, Hun Suk; Jang, Do Yeon; Moon, Chung Sun; Jung, Hee Jung; (18 pag.)KR101526249; (2015); B1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem

Some scientific research about 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

To BIC (110 g, 1 eq) was added acetone (385 mL, 3.5 vol) at 25C – 30C, and the mixture was dissolved by stirring for 5 min. Sodium carbonate (20.85 g, 1.3 eq) and potassium iodide (0.25 g, 0.01) were added, and the mixture was stirred for 10 min. A solution of 4-chloromethyl-5-methyl-2-oxo-1,3-dioxolene (31.456 g, 1.4 eq) in acetone (165 mL, 1.5 vol) was added thereto. The reaction mixture was heated to 45C – 50C, and stirred at the same temperature for 12 hr. Using TLC (thin layer chromatography) (TLC eluent: 10% methanol/methylene chloride, detection method: UV), complete disappearance of BIC was confirmed. The reaction mixture was cooled to 25C – 30C. Then, the solvent contained in the reaction mixture was evaporated under reduced pressure at 40C – 45C. To the obtained residue were added 10% brine (550 mL, 5 vol) and toluene (550 mL, 5 vol). Furthermore, the mixture was adjusted to pH 7 – 8 by adding 5% hydrochloric acid (33 mL), stirred for 10 min, left standing for 5 min and partitioned. The aqueous layer was extracted with toluene (2×330 mL, 2×3 vol). The extracts were combined with the organic layer, 10% brine (550 mL, 5 vol) was added, and the mixture was stirred for 5 min, left standing for 45 min, partitioned, and concentrated under reduced pressure at 40C – 45C to give TOLM (110 g, 90%). [0306] To the obtained TOLM was added acetone (110 mL, 1 vol), and the mixture was stirred at 25C – 30C for 30 min. n-Heptane (440 mL, 4 vol) was added, and the mixture was cooled to 5C – 10C and stirred at 5C – 10C for 30 min, whereby precipitation of a solid was confirmed. The solid (80 g, 66%) was collected by filtration, and blast dried. To the obtained solid was added isopropyl alcohol (400 mL, 5 vol), and the mixture was heated to 50C – 55C and stirred at 50C – 55C for 1 hr. Then, the mixture was cooled to 25C – 30C, and stirred at 25C – 30C for 1 hr. The resulting solid was filtered and suction-filtered for 10 min to give TOLM (76 g, 62%).

The chemical industry reduces the impact on the environment during synthesis, 4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, , 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

Continuously updated synthesis method about 80841-78-7

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

4-(Chloromethyl)-5-methyl-1,3-dioxol-2-one, 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.”80841-78-7

Example 1(1) Tritylation and DMDO Esterification ReactionsAfter mixing 4-(1-hydroxy-1-methylethyl)-2-propyl-1-[[2′-[1H-tetrazol-5-yl]biphenyl-4-yl]methyl]imidazole-5-carboxylic acid (30 g), acetone (210 mL), 1,8-diazabicyclo[5,4,0]-7-undecene [DBU] (25.5 g) and triphenylmethyl chloride [TPC] (23.79 g), water (0.6 mL) was added and acetone (30 mL) was poured into the mixture, and the reaction mixture was stirred at 48 to 52 C. for 2 hours. Then, water (0.9 mL) was added and 4-chloromethyl-5-methyl-1,3-dioxol-2-one [DMDO-Cl] (18.5 g) was poured in, and the reaction mixture was stirred at 48 to 52 C. for 5 hours.(2) Obtaining Crude Crystals of Trityl Olmesartan Medoxomil (Acetone Solvate Crystals)After the reaction mixture was cooled to 20 C. to precipitate crystals, it was stirred at 15 to 25 C. for 40 minutes, and water (96 mL) was added dropwise over a period of 25 minutes, and then the reaction mixture was cooled to 0 to 5 C. and stirred for 30 minutes. The precipitated crystals were filtered out and washed with acetone-water (150 mL), and wet crude crystals of (5-methyl-2-oxo-1,3-dioxolen-4-yl)methyl 4-(1-hydroxy-1-methylethyl)-2-propyl-1-[[2′-[2-(triphenylmethyl)-2H-tetrazol-5-yl]biphenyl-4-yl]methyl]imidazole-5-carboxylate (57.83 g) were obtained. These were then dried in vacuo at 60 C. for approximately 15 hours, and the dry acetone solvate crystals (57.50 g) were obtained.

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

Reference£º
Patent; DAIICHI SANKYO COMPANY, LIMITED; US2012/59172; (2012); A1;,
1,3-Benzodioxole – Wikipedia
Dioxole | C3H4O2 – PubChem