Sources of common compounds: 38762-41-3

According to the analysis of related databases, 38762-41-3, the application of this compound in the production field has become more and more popular.

Electric Literature of 38762-41-3, In the chemical reaction process, reaction time, type of solvent, can easily affect the result of the reaction, thereby determining the yield and properties of the reaction product. An updated downstream synthesis route of 38762-41-3 as follows.

To a solution of 4-bromo-2-chloro-phenylamine (32 g, 0.15 mol) and pyridine (13.45 g, 0.17 mol) in DCM (200 mL) was added 3-chloropropionyl chloride (21.65 g, 0.17 mol) dropwise at 15 C. After stirring at room temperature for 1 hour, the mixture was washed with water and then aqueous 2N HC1. The organic layer was dried over anhy. Na2S04, filtered, and concentrated in vacuo to afford title compound (10.9 g, 90%) as a white solid.

According to the analysis of related databases, 38762-41-3, the application of this compound in the production field has become more and more popular.

Reference:
Patent; F. HOFFMANN-LA ROCHE AG; HOFFMANN-LA ROCHE INC.; AEBI, Johannes; AMREIN, Kurt; HORNSPERGER, Benoit; KUHN, Bernd; MAERKI, Hans P.; MARTIN, Rainer E.; MAYWEG, Alexander V.; TAN, Xuefei; (77 pag.)WO2016/66597; (2016); A1;,
Chloride – Wikipedia,
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Discovery of 11-Chlorodibenzo[b,f][1,4]thiazepine

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route 11-Chlorodibenzo[b,f][1,4]thiazepine, its application will become more common.

Application of 13745-86-3,Some common heterocyclic compound, 13745-86-3, name is 11-Chlorodibenzo[b,f][1,4]thiazepine, molecular formula is C13H8ClNS, 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.

(b) 11-Piperazinyl-dibenzo[b,f][1,4]thiazepine. Piperazine (1.7 mole) was dissolved in warm toluene (about 50C) (750 ml) and 11-chloro-dibenzo[b,f][1,4]thiazepine added. The reaction was heated to reflux and maintained at this temperature for 5 hr. After cooling to ambient temperature the reaction was filtered to remove piperazine hydrochloride, the organic phase was washed several times with water to remove excess piperazine. The organic phase was dried over magnesium sulphate and after filtration the solvent was removed in vacuo to give the product as an oil. The oil was dissolved in ethanol and treated with a solution of hydrogen chloride in ethanol. 11-Piperazinyl-dibenzo[b,f][1,4]thiazepine was isolated as the dihydrochloride salt in ca 88% yield, m.pt. 103-105 (softens), 135-140C (decomp).

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route 11-Chlorodibenzo[b,f][1,4]thiazepine, its application will become more common.

Reference:
Patent; IMPERIAL CHEMICAL INDUSTRIES PLC; EP282236; (1988); A1;,
Chloride – Wikipedia,
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The important role of 1-(3-Chloropropoxy)-4-fluorobenzene

The chemical industry reduces the impact on the environment during synthesis 1-(3-Chloropropoxy)-4-fluorobenzene. I believe this compound will play a more active role in future production and life.

Related Products of 1716-42-3, Each compound has different characteristics, and only by selecting the characteristics of the compound suitable for a specific situation can the compound be applied on a large scale. 1716-42-3, name is 1-(3-Chloropropoxy)-4-fluorobenzene, This compound has unique chemical properties. The synthetic route is as follows.

EXAMPLE 14 N-Methyl-N-(4-(4-(1-(3-(4-fluorophenoxy)propyl)-1H-benzimidazol-2-yl-amino)piperidin-1-yl)-2-(3,4-dichlorophenyl)butyl)benzamide STR38 14.1 Synthesis of N-methyl-N-(4-(4-(1-(3-(4-fluorophenoxy)propyl)-1H-benzimidazol-2-yl-amino)piperidin-1-yl) -2-(3,4-dichlorophenyl)butyl)benzamide Combine N-methyl-N-(4-(4-(1H-benzimidazol-2-yl-amino)piperidin-1-yl)-2-(3,4-dichlorophenyl)butyl)benzamide (0.78 mmol), 1-chloro-3-(4-fluorophenoxy)propane (0.15 g, 0.78 mmol), benzyltriethylarnmonium chloride (0.01 g), sodium hydroxide (2.0 g), water (2 mL), and dichloromethane (4 mL). Heat to about 35° C. After 18 hours, add ethyl acetate (100 mL) and separate the layers. Extract the organic layer with aqueous saturated sodium bicarbonate and brine. Dry the organic layer over Na2 SO4, filter, and evaporate in vacuo to give the title compound.

The chemical industry reduces the impact on the environment during synthesis 1-(3-Chloropropoxy)-4-fluorobenzene. I believe this compound will play a more active role in future production and life.

Reference:
Patent; Hoechst Marion Roussel, Inc.; US5922737; (1999); A;,
Chloride – Wikipedia,
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New downstream synthetic route of p-Tolylmethanesulfonyl chloride

The synthetic route of 51419-59-1 has been constantly updated, and we look forward to future research findings.

Reference of 51419-59-1,Some common heterocyclic compound, 51419-59-1, name is p-Tolylmethanesulfonyl chloride, molecular formula is C8H9ClO2S, 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.

General procedure: Sodium hydride (60percent dispersion in mineral oil) (18 mg, 0.45 mmol) was added to a solution of 2-(4-(Piperazine-1-carbonyl)phenyl)quinazolin-4(3H)-one (4) (50 mg, 0.15 mmol) in DMF (10 mL), and the mixture was heated at 100 °C. Appropriate sulfonyl chloride (0.22 mmol) in DMF (3 mL) was added slowly to the reaction mixture. The mixture was stirred at 100 °C for 16 h. After cooling, saturated NaHCO3 solution was added. The reaction mixture was extracted with ethyl acetate and the organic phase was washed with brine. The organic phase was dried over MgSO4 and evaporated in vacuo. The residue was washed with ethyl acetate/hexane (1:10) and purified by column chromatography (ethyl acetate) to provide 2-(4-(4-(substituted)-sulfonyl)piperazine-1-carbonyl)phenyl)quinazolin-4(3H)-one.

The synthetic route of 51419-59-1 has been constantly updated, and we look forward to future research findings.

Reference:
Article; Rhee, Hee-Kyung; Yoo, Ji Hye; Lee, Eunyoung; Kwon, Young Joo; Seo, Hang-Rhan; Lee, Yun-Sil; Choo, Hea-Young Park; European Journal of Medicinal Chemistry; vol. 46; 9; (2011); p. 3900 – 3908;,
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Some tips on 13745-86-3

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 13745-86-3.

Each compound has different characteristics, and only by selecting the characteristics of the compound suitable for a specific situation can the compound be applied on a large scale. 13745-86-3, name is 11-Chlorodibenzo[b,f][1,4]thiazepine, This compound has unique chemical properties. The synthetic route is as follows., Formula: C13H8ClNS

EXAMPLE 2; Preparation of ll-piperazinyldibenzo[b,f][l,4]thiazepine; [0035] To the organic fraction recovered according to Example 1, 140 g (1.6 moles) of anhydrous piperazine is added in a reaction vessel. The temperature of the mixture is gradually increased to reflux (about 110 0C) over a period of about one hour and is kept at that temperature for about 1 to 2 hours. The heat-up is aided by the exothermic reaction that occurs. The extent of the reaction can be monitored by HPLC, but is typically completed within three hours. The reaction mixture then is cooled to ambient temperature and precipitated piperazine dihydrochloride is filtered from the product solution. An aqueous solution of MTBE and methanol (water:MTBE:methanol having a volume ratio of 2.5:1:0.6) is used to wash excess piperazine from the solution, which is removed with the aqueous phase that separates from the organic phase on standing. The organic layer can be washed one to two additional times with water.

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 13745-86-3.

Reference:
Patent; CAMBREX CHARLES CITY, INC.; WO2006/135544; (2006); A1;,
Chloride – Wikipedia,
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Application of C6H3ClF2O2S

The basis of chemical reaction formula synthesis, the synthesis route is composed of some specific reactions and combined according to certain logical thinking. We look forward to the emergence of more reaction modes in the future.

Researchers who often do experiments know that organic synthesis is a process of preparing more complex target molecules from simple raw materials through one or more chemical reactions. Generally, it requires fewer steps, and cheap raw materials. 13918-92-8, name is 2,4-Difluorobenzene-1-sulfonyl chloride, A new synthetic method of this compound is introduced below., Computed Properties of C6H3ClF2O2S

General procedure: To a solution of 5-bromo-2-methoxypyridin-3-amine (2.01 g,10 mmol) in pyridine (50 mL) at 0 C was added methanesulfonylchloride (1.72 g, 11 mmol). Then the mixture was stirred at 25 C for24 h. Pyridine was removed at reduced pressure and add water (100 mL), extracted with ethyl acetate (3×100 mL), the organic layerwas washed with water (50 mL), dried with Na2SO4 and evaporated togive compound 6a as a white solid. Yield 78.4%, m.p. 150-151 C. 1HNMR (400 MHz, DMSO-d6) 9.51 (s, 1H, NH), 8.09 (d, J=2.4 Hz, 1H,Ar-H), 7.77 (d, J=2.4 Hz, 1H, Ar-H), 3.91 (s, 3H, OCH3), 3.16 (t,J=7.6 Hz, 2H, CH2), 1.73-1.65 (m, 2H, CH2), 1.42-1.33 (m, 2H, CH2),0.87 (t, J=7.2 Hz, 3H, CH3). ESI-MS: m/z 384.1 [M+H]+.Compounds 6b was synthesized according to the procedure describedin 6a.

The basis of chemical reaction formula synthesis, the synthesis route is composed of some specific reactions and combined according to certain logical thinking. We look forward to the emergence of more reaction modes in the future.

Reference:
Article; Dong, Fu-Dan; Liu, Dan-Dan; Deng, Cheng-Long; Qin, Xiao-chun; Chen, Kai; Wang, Jian; Song, Hong-Rui; Ding, Huai-Wei; Bioorganic and Medicinal Chemistry; vol. 26; 14; (2018); p. 3982 – 3991;,
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Introduction of a new synthetic route about 63624-28-2

According to the analysis of related databases, 63624-28-2, the application of this compound in the production field has become more and more popular.

In the chemical reaction process, reaction time, type of solvent, can easily affect the result of the reaction, thereby determining the yield and properties of the reaction product. An updated downstream synthesis route of 63624-28-2 as follows. Quality Control of 2,4-Dimethoxybenzene-1-sulfonyl chloride

Example 199; 1 -(2,4-Dimethoxybenzensulfonyl)-2-oxo-3-{2-oxo-1 -phenyl-2-[(S)-3-(4- propylpiperazin-1 -yl)pyrrolidin-1 -yl]ethyl}-2,3-dihydro-1 H-benzimidazole-5- carbonitrile; To a solution of 2-oxo-3-{2-oxo-1-phenyl-2-[(S)-3-(4-propyl-piperazin-1-yl)-pyrrolidin- 1-yl]-ethyl}-2,3-dihydro-1 H-benzoimidazole-5-carbonitrile (32 mg, 0.07 mmol), triethylamine (0.02 ml_, 0.13 mmol) and DMAP (catalytic amount) in CH2CI2 (2 ml.) 2,4-dimethoxybenzenesulfonyl chloride (17 mg, 0.077 mmol) was added. The reaction mixture was stirred at room temperature for 24 hours, diluted with water and extracted the aqueous phase with CH2CI2 (3 x). The combined organic phase was washed with saturated NaHCO3 aqueous solution, dried over Na2SO4, filtered and concentrated in vacuo. The residue was purified by flash chromatography in silica gel using 4% methanol in CH2CI2 as eluent to afford 1-(2,4-dimethoxy- benzenesulfonyl)-2-oxo-3-{2-oxo-1-phenyl-2-[(S)-3-(4-propyl-piperazin-1-yl)- pyrrolidin-1-yl]ethyl}-2,3-dihydro-1 H-benzoimidazole-5-carbonitrile (29 mg, 66%) as a white solid. 1H-NMR (400 MHz, CDCI3): delta 0.88-0.94 (m, 3H), 1.28 (m, 2H), 1.84 (m, 1 H), 2.14 (m, 1 H), 2.25-2.59 (m, 9H), 2.79-3.12 (m, 2H), 3.23-3.58 (m, 2H), 3.48 (s, 3H), 3.73- 3.99 (m, 2H), 3.89 (s, 3H), 6.36-6.44 (m, 2H), 6.65 (d, 8.9 Hz, 1 H), 7.00-7.10 (m, 1 H), 7.22-7.26 (m, 2H), 7.34-7.39 (m, 4H), 7.94 (d, 8.5 Hz, 1 H), 8.14 (d, 8.9 Hz, 1 H). MS (API-ES, pos) m/z = 673

According to the analysis of related databases, 63624-28-2, the application of this compound in the production field has become more and more popular.

Reference:
Patent; ABBOTT GMBH & CO. KG; WO2008/25736; (2008); A1;,
Chloride – Wikipedia,
Chlorides – an overview | ScienceDirect Topics

Extracurricular laboratory: Synthetic route of 6223-78-5

The basis of chemical reaction formula synthesis, the synthesis route is composed of some specific reactions and combined according to certain logical thinking. We look forward to the emergence of more reaction modes in the future.

Researchers who often do experiments know that organic synthesis is a process of preparing more complex target molecules from simple raw materials through one or more chemical reactions. Generally, it requires fewer steps, and cheap raw materials. 6223-78-5, name is 2,5-Dichloro-2,5-dimethylhexane, A new synthetic method of this compound is introduced below., Computed Properties of C8H16Cl2

To 2,5-dimethyl-2,5-hexanediol (10 g, 68.5 mmol) in a 500 mL flask was added reagent grade concentrated HCl (150 mL) and the solution was stirred at ambient temperature for 1 h. Water (100 mL) and CH2Cl2 (100 mL) were then added slowly and the layers were separated. The aqueous layer was washed with additional CH2Cl2 (100 mL). The combined organic layers were dried over MgSO4 and filtered thru silica gel pad. The solvent was removed to yield 10.9g (87%) of 2,5-dichloro-2,5-dimethylhexane. The dichloride was dissolved in 150 mL Of CH2Cl2 and 9.6 mL of toluene (90 mmol) was added. AlCl3 (390 mg, 2.9 mol) was added in portions over 5 min at ambient temperature. HCl is evolved and the solution turns dark red. The reaction was placed in an ice-bath and quenched with deionized water (120 mL). Hexane (150 mL) was added and the organic layer was removed. The aqueous layer was washed with additional hexane (150 mL). The combined organic layers were washed with water (200 mL) and brine (100 mL) and dried over MgSO4. The solvent was removed in vacuo to give l,l,4,4,6-pentamethyl-l,2,3,4- tetrahydronaphthalene as a colorless oil that crystallized after storage at -2O0C.[0155] Yield: 12 g (91%); low melting white solid; Rf = 0.7 in 100% hexane.[0156] 1H-NMR (CDCl3, 300 MHz) delta 1.32 (s, 12H), 1.7 (s, 4H), 2.34 (s, 3H), 6.85 (dd, IH), 7.14 (d, IH), 7.22 (d, IH)[0157] 13C-NMR (CDCl3, 75 MHz) delta 21.54, 32.26, 32.32, 34.29, 34.51, 35.57, 35.63, 126.64, 126.75, 127.21, 134.93, 142.00, 144.83.

The basis of chemical reaction formula synthesis, the synthesis route is composed of some specific reactions and combined according to certain logical thinking. We look forward to the emergence of more reaction modes in the future.

Reference:
Patent; AUSPEX PHARMACEUTICALS, INC.; WO2007/22437; (2007); A2;,
Chloride – Wikipedia,
Chlorides – an overview | ScienceDirect Topics

Share a compound : C6H3BrClF

The synthetic route of 1996-29-8 has been constantly updated, and we look forward to future research findings.

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. 1996-29-8, name is 1-Bromo-4-chloro-2-fluorobenzene belongs to chlorides-buliding-blocks compound, it is a common compound, a new synthetic route is introduced below. COA of Formula: C6H3BrClF

To a stirred solution of l-Bromo-4-chloro-2-fluorobenzene Al (200 g, 0.955 mol, 1.0 equiv.) in anhydrous THF (2.0 L) was added 2.0 M lithium diisopropylamide (LDA) in THF (620 mL, 1.24 mol, 1.3 equiv.) at -50 C, the reaction mixture was allowed to -20 C and stirred for 1 h. Then it was re-cooled to -50 C and slowly added DMF (184.8 mL, 2.48 mol, 2.6 equiv.) at the same temperature. The mixture was allowed to 0 C and stirred for 30-45 min. After completion of the reaction (monitored by TLC), it was quenched with the slow addition of ice cold water (2.0 L); then diluted with ethyl acetate (2.0 L) and stirred for 15 min at room temperature. The organic layer was separated and aqueous layer was extracted with ethyl acetate (2 x 1.0 L). The combined organic layers were washed with water (2 x 1 0 L); 1.0 N HC1 (1 0 L) and 1 % NaCl solution (2.0 L). The organic layer was dried over anhydrous Na2SC , concentrated under vacuum. The resultant crude solid was directly used for next step without further purification. Yield: 210.0 g, 93% (reported 78%). NMR (400 MHz, CDCb): delta 10.39 (d, J= 0.8 Hz, 1H), 7.69 (dd, Ji = 7.2 Hz, J2 = 8.8 Hz, 1H), 7.19 (dd, Ji = 1.2 Hz, J2 = 8.4 Hz, 1H).

The synthetic route of 1996-29-8 has been constantly updated, and we look forward to future research findings.

Reference:
Patent; VIIV HEALTHCARE UK (NO.5) LIMITED; BABU, Suresh; BELEMA, Makonen; BENDER, John A; IWUAGWU, Christiana; KADOW, John F.; KUMARAVEL, Selvakumar; NAGALAKSHMI, Pulicharla; NAIDU, B. Narasimhulu; PATEL, Manoj; PEESE, Kevin M; RAJAMANI, Ramkumar; SAULNIER, Mark; WANG, Alan Xiangdong; (536 pag.)WO2018/203235; (2018); A1;,
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Simple exploration of C7H7ClO

The synthetic route of 1-Chloro-4-methoxybenzene has been constantly updated, and we look forward to future research findings.

These common heterocyclic compound, 623-12-1, name is 1-Chloro-4-methoxybenzene, 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. Recommanded Product: 1-Chloro-4-methoxybenzene

General procedure: A Schlenk flask was charged with aryl chlorides (0.20 mmol), arylboronic acids (0.30 mmol), N-heterocyclic carbenepalladium(II) complex 3 (2 mol %), KOtBu (2.0 equiv), iPrOH(1 mL) and H2O (1 mL). The mixture was stirred at 80 C for 15 h under N2. After cooling, the reaction mixture was evaporated andthe product was isolated by preparative TLC on silica gel plates. The purified products were identified by 1H NMR spectra and their analytical data are given in Supporting Information.

The synthetic route of 1-Chloro-4-methoxybenzene has been constantly updated, and we look forward to future research findings.

Reference:
Article; Wang, Tao; Xie, Huanping; Liu, Lantao; Zhao, Wen-Xian; Journal of Organometallic Chemistry; vol. 804; (2016); p. 73 – 79;,
Chloride – Wikipedia,
Chlorides – an overview | ScienceDirect Topics