Continuously updated synthesis method about 1127-85-1

Statistics shows that 2,4-Dichloro-5,6,7,8-tetrahydroquinazoline is playing an increasingly important role. we look forward to future research findings about 1127-85-1.

Application of 1127-85-1, These common heterocyclic compound, 1127-85-1, name is 2,4-Dichloro-5,6,7,8-tetrahydroquinazoline, 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.

The title compound in this step was prepared according to the method described in step 4 of Example 4, ie, 2,4_dichloro_5,6,7,8-tetrahydroquinazoline (3.21 g, 15.8 lmmo 1) and sodium hydroxide solution (100mL, 1mol/L) and tetrahydrofuran (12mL)Reaction at 60C for 12h. The obtained crude product was separated and purified by silica gel column chromatography (petroleum ether/ethyl acetate (nu/nu) = 4/1) to obtain the standardThe title compound (white solid, 2.61g, 91%).

Statistics shows that 2,4-Dichloro-5,6,7,8-tetrahydroquinazoline is playing an increasingly important role. we look forward to future research findings about 1127-85-1.

Reference:
Patent; GUANGDONG HEC PHARMACEUTICAL; Guangdong Dongyangguang Pharmaceutical Co., Ltd.; JIN CHUANFEI; Jin Chuanfei; LAO JINHUA; Lao Jinhua; ZHANG YINGJUN; Zhang Yingjun; (35 pag.)CN108299437; (2018); A;,
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Extended knowledge of 1-Chloro-4-methoxybenzene

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route 1-Chloro-4-methoxybenzene, its application will become more common.

Related Products of 623-12-1,Some common heterocyclic compound, 623-12-1, name is 1-Chloro-4-methoxybenzene, molecular formula is C7H7ClO, 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.

EXAMPLE 6 The general procedure from Example 1A was followed using 4-chloroanisole (171 mg, 1.2 mmol) and piperidine (100 mul, 1.0 mmol) with Pd2(dba)3 (20 mg, 0.0218 mmol) and (Me3C)2PH(O) (14.5 mg, 0.0878 mmol) and NaOtBu (144 mg, 1.5 mmol) in 4.0 mL of toluene. After 12 h, the reaction mixture was chromatographed with 5% ethyl acetate/hexane to give 128 mg (67% yield) of N-(4-methoxyphenyl)piperidine. It was >95% pure by 1H NMR and GC/MS. 1H NMR (500 MHz, CDCl3): delta 6.81 (d, J=9.11 Hz, 2H), 6.72 (d, J=9.11 Hz, 2H), 3.65 (s, 3H), 2.92 (t, J=5.46 Hz, 4H), 1.60 (m, 4H), 1.46 (m, 2H) ppm. 13C NMR (125 MHz, CDCl3): delta 153.5, 146.8, 118.6, 114.3, 55.4, 52.2, 26.1, 24.1 ppm.

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route 1-Chloro-4-methoxybenzene, its application will become more common.

Reference:
Patent; Li, George Y.; US2002/137974; (2002); A1;,
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Introduction of a new synthetic route about 4-Chloro-2-methoxyaniline

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, 4-Chloro-2-methoxyaniline, other downstream synthetic routes, hurry up and to see.

Adding a certain compound to certain chemical reactions, such as: 93-50-5, name is 4-Chloro-2-methoxyaniline, belongs to chlorides-buliding-blocks compound, 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 93-50-5, category: chlorides-buliding-blocks

General procedure: Aniline (0.94 g,0.010 mol) was added dropwise, with stirring, to syrupy phosphoricacid (15 mL) at 0C. Finely ground sodiumnitrite (0.83 g,0.012 mol) was added with stirring over 15 min. This solutionwas allowed to stand at 0C for ca. 1 h after which time urea(ca. 100 mg) was added to destroy unreacted nitrite. After a further30min at 0C, a solution of freshly distilledmercaptoaceticacid (0.92 g, 0.010 mol) in water (250 mL) at 0C was addedswiftlywithvigorous stirring,maintainingapHof ca. 4. After ca.1 h of stirring at 0C, a dense pale buff precipitate had formed.The suspension was then filtered, washed with distilled waterand dried in a vacuum desiccator. A second crop of precipitatewas obtainedonkeeping the filtrate for severalhours at 0C. Thecombined dried crops were purified by dissolving in a minimumof dry diethyl ether and adding dry petroleum ether (bp. 40-60C) at 0C. After 1 h at 0C, fine, very pale buff needles wereformed; these were filtered and dried in vacuo to give 1a (1.51 g,77%).

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, 4-Chloro-2-methoxyaniline, other downstream synthetic routes, hurry up and to see.

Reference:
Article; Buglass, Alan J.; Datta, Mrityunjoy; Phosphorus, Sulfur and Silicon and the Related Elements; vol. 193; 4; (2018); p. 218 – 224;,
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Extended knowledge of 63624-28-2

The synthetic route of 2,4-Dimethoxybenzene-1-sulfonyl chloride has been constantly updated, and we look forward to future research findings.

These common heterocyclic compound, 63624-28-2, name is 2,4-Dimethoxybenzene-1-sulfonyl chloride, 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. Application In Synthesis of 2,4-Dimethoxybenzene-1-sulfonyl chloride

B) 3-(2-Chlorophenyl)-1-[(2,4-dimethoxyphenyl)sulphonyl]-5-methyl-3-[2-oxo-2-[4-(2-pyridyl)-1-piperazinyl]ethyl]-1,3-dihydro-2H-indol-2-one 0.0335 g of 60% sodium hydride in oil is added, at RT, to a mixture of 0.3 g of the compound obtained in the preceding step in 10 ml of THF, and the mixture is stirred for 30 minutes. 0.2 g of 2,4-dimethoxybenzenesulphonyl chloride is then added and the mixture is stirred at RT for 1 hour. 50 ml of water are added to the reaction mixture and the resulting mixture is extracted with EtOAc, the organic phase is dried over Na2SO4 and the solvent is evaporated off under vacuum.The residue is chromatographed on silica gel, eluding with a DCM/MeOH mixture (98/2; v/v).0.32 g of the expected product is obtained after crystallization from iso ether, m.p.=239 C.

The synthetic route of 2,4-Dimethoxybenzene-1-sulfonyl chloride has been constantly updated, and we look forward to future research findings.

Reference:
Patent; Di Malta, Alain; Garcia, Georges; Roux, Richard; Schoentjes, Bruno; Serradeil-Le Gal, Claudine; Tonnerre, Bernard; Wagnon, Jean; US2004/180878; (2004); A1;,
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Application of 918538-05-3

At the same time, in my other blogs, there are other synthetic methods of this type of compound, 2,4-Dichloropyrrolo[2,1-f][1,2,4]triazine, and friends who are interested can also refer to it.

Adding a certain compound to certain chemical reactions, such as: 918538-05-3, name is 2,4-Dichloropyrrolo[2,1-f][1,2,4]triazine, belongs to chlorides-buliding-blocks compound, 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 918538-05-3, name: 2,4-Dichloropyrrolo[2,1-f][1,2,4]triazine

General procedure: To a solution of 2,4-dichlorofuro[3,2-d]pyrimidine (la) (0.71 g, 3.74 mmol; CAS 956034- 07-4) in 2-Propanol (20 mL) was added DIPEA (1.63 mL, 9.36 mmol), 1-methyl-1H-imidazol-4-amine hydrochloride (0.5 g, 3.74 mmol) and heated at reflux for 24 h. The reaction mixture was concentrated in vacuum to dryness and the residue obtained was triturated with water. The solid obtained was collected by filtration and dried in vacuum to afford 2-chloro-N-(l-methyl-lH-imidazol-4-yl)furo[3,2-d]pyrimidin-4-amine (lb) (550 mg,59 % yield) as brown solid; NMR (300 MHz, DMSO-^) delta 10.89 (s, 1H, D20exchangeable), 8.35 (d, J = 2.1 Hz, 1H), 7.52 (d, J = 1.6 Hz, 1H), 7.39 (d, J = 1.3 Hz, 1H), 7.03 (d, J = 2.1 Hz, 1H), 3.71 (s, 3H); MS (ES+): 250.3 (M+l), 272.3, 274.3 (M+Na), (ES-): 248.2 (M-l).

At the same time, in my other blogs, there are other synthetic methods of this type of compound, 2,4-Dichloropyrrolo[2,1-f][1,2,4]triazine, and friends who are interested can also refer to it.

Reference:
Patent; BIOCRYST PHARMACEUTICALS, INC.; KOTIAN, Pravin, L.; BABU, Yarlagadda, S.; KUMAR, V., Satish; ZHANG, Weihe; LU, Peng-Cheng; RAMAN, Krishnan; (747 pag.)WO2018/232094; (2018); A1;,
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Sources of common compounds: 4-Bromo-1,2-dichlorobenzene

According to the analysis of related databases, 18282-59-2, 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 18282-59-2 as follows. Quality Control of 4-Bromo-1,2-dichlorobenzene

A. 1-Bromo-4,5-dichloro-2-nitro-benzene. 4-Bromo-1,2-dichlorobenzene (10.5 g, 46.3 mmol) was added to 25 mL concentrated sulfuric acid at 0° C. A 1:1 mixture of 70percent nitric acid and concentrated sulfuric acid (20 mL) was added dropwise over 40 min. The reaction mixture was allowed to warm to ambient temperature with stirring over 0.5 h, then was poured onto cracked ice. The resulting mixture was filtered through paper, and the collected solids were washed with water (5*) and then dried at 45° C. under reduced pressure for 30 min to provide 10.7 g of an 88:12 mixture of desired nitroarene to starting material. Recrystalization from absolute ethanol provided 4.76 g of long yellow needles corresponding to a 20:1 mixture of product to starting material. The mother liquor was concentrated and recrystallized twice to provide an additional 1.18 g of product (17:1 mixture with recovered starting material). TLC (silica gel, 1:1 hexanes/EtOAc): Rf=0.45. 1H NMR (400 MHz, CDCl3): 7.95 (s, 1H), 7.80 (s, 1H).

According to the analysis of related databases, 18282-59-2, the application of this compound in the production field has become more and more popular.

Reference:
Patent; Allison, Brett; McAtee, Laura C.; Phuong, Victor K.; Rabinowitz, Michael H.; Shankley, Nigel P.; US2004/224983; (2004); A1;,
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Brief introduction of C7H6ClF

The synthetic route of 33406-96-1 has been constantly updated, and we look forward to future research findings.

Reference of 33406-96-1, A common heterocyclic compound, 33406-96-1, name is 1-Chloro-4-fluoro-2-methylbenzene, molecular formula is C7H6ClF, 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.

General procedure: A mixture of aryl chloride (0.125 mmol), aryl boronic acid (0.15 mmol) and K4PO3 (0.25 mmol), catalyst (0.000125 mmol) in H2O (0.1 mL), isopropanol (0.1 mL) was stirred in a test tube at 45 C. After the reaction was completed, cooled to room temperature and the mixture was extracted with CH2Cl2 and dried over Na2SO4. The solvent was removed under vacuum. The product was purified by flash chromatography on a silica gel column. The characterization of all coupling products see Supporting Information.

The synthetic route of 33406-96-1 has been constantly updated, and we look forward to future research findings.

Reference:
Article; Han, Fangwai; Li, Yanji; Liu, Guiyan; Lu, Qingwen; Ni, Chang; Zeng, Yongfei; Zhang, Rong; Zhang, Xue; Zhang, Yingying; Zhao, Yuxuan; Tetrahedron Letters; (2019);,
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Share a compound : 1939-99-7

According to the analysis of related databases, 1939-99-7, the application of this compound in the production field has become more and more popular.

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. 1939-99-7, name is Phenylmethanesulfonyl chloride, This compound has unique chemical properties. The synthetic route is as follows., name: Phenylmethanesulfonyl chloride

Step 1 : N-re^butyl-1 -phenylmethanesulfonamide To a solution of teri-butylamine (2 g, 27.3 mmol) in dichloromethane (90 mL) was added N,N-diisopropylethylamine (5.7 mL, 32.8 mmol), followed by phenylmethanesulfonyl chloride (6.25 g, 32.8 mmol) and the reaction was stirred at ambient temperature for 16 hours. The reaction was then diluted with dichloromethane, washed with water and brine, dried with MgS04, and purified by silica gel column chromatography (0-50% EtOAc in heptane) to give N-teri-butyl-l-phenyl- methanesulfonamide (4.81 g, 77% yield). 1 H NMR (400 MHz, CDC13) delta 7.51 – 7.44 (m, 2H), 7.41 (dd, J= 4.9, 2.0 Hz, 3H), 4.49 (s, 2H), 4.27 (s, 1H), 1.68 (s, 6H); LCMS (m/z) ES+ 228 [M+l]+.

According to the analysis of related databases, 1939-99-7, the application of this compound in the production field has become more and more popular.

Reference:
Patent; F. HOFFMANN-LA ROCHE AG; FAUBER, Benjamin; RENE, Olivier; WO2013/92941; (2013); A1;,
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The origin of a common compound about 1-Bromo-4-chloro-2-fluorobenzene

According to the analysis of related databases, 1996-29-8, 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 1996-29-8 as follows. Safety of 1-Bromo-4-chloro-2-fluorobenzene

To a solution of 1-bromo-4-chloro-2-fluorobenzene (10.0 g, 47.8 mmol) in dry THF (300 ml.) at -78 C under nitrogen was added LDA (2.0 M solution in THF, 31 ml_, 62.1 mmol) dropwise and the mixture was stirred at -78 C for 15 min. DMF (7.00 g, 95.8 mmol) was added and the mixture was allowed to warm to room temperature. The reaction mixture was quenched with a saturated aqueous NH4CI solution and the mixture was extracted with EtOAc (400 ml. x 3). The combined organic extracts were washed with brine (300 ml_), dried over Na2S04, filtered and concentrated under reduced pressure. The residue was purified by silica gel chromatography (100% Pet. Ether) to give the title compound (4.0 g, 35%) as a white solid, which was used directly in the next step.

According to the analysis of related databases, 1996-29-8, the application of this compound in the production field has become more and more popular.

Reference:
Patent; CTXT PTY LIMITED; MORROW, Benjamin, Joseph; CAMERINO, Michelle, Ang; WALKER, Scott, Raymond; STEVENSON, Graeme, Irvine; STUPPLE, Paul, Anthony; (266 pag.)WO2019/219820; (2019); A1;,
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The origin of a common compound about C6H5ClFN

At the same time, in my other blogs, there are other synthetic methods of this type of compound, 4-Chloro-3-fluoroaniline, and friends who are interested can also refer to it.

Adding a certain compound to certain chemical reactions, such as: 367-22-6, name is 4-Chloro-3-fluoroaniline, belongs to chlorides-buliding-blocks compound, 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 367-22-6, category: chlorides-buliding-blocks

Step B: 4-Chloro-5-fluoro-2-iodo-phenylamine Iodine chloride (20.6 ml, 1M solution in DCM, 20.6 mmol) was added dropwise to a solution of 4-chloro-3-fluoroaniline (2 g, 13.7 mmol) in methanol (35 ml) at 0 C. and the reaction mixture was stirred for 1 h at room temperature. Volatiles were removed under reduced pressure, water was added and the mixture was extracted with dichloromethane. The combined organic layers were washed with water, dried with Na2SO4 and evaporated. The remaining residue was purified by chromatography with three consecutive columns (silica gel, heptane/EtOAc 98:2-93:7 and twice heptane/EtOAc 98:2-95:5) to obtain the title compound (2.51 g, 67%) as dark red solid. MS (ESI): 272.1 (M+H)+.

At the same time, in my other blogs, there are other synthetic methods of this type of compound, 4-Chloro-3-fluoroaniline, and friends who are interested can also refer to it.

Reference:
Patent; Hoffmann-La Roche Inc.; Ceccarelli, Simona M.; Conte, Aurelia; Kuehne, Holger; Kuhn, Bernd; Neidhart, Werner; Obst Sander, Ulrike; Rudolph, Markus; US2013/116234; (2013); A1;,
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Chlorides – an overview | ScienceDirect Topics