The origin of a common compound about 4-Chloro-1H-pyrrolo[3,2-c]pyridine

At the same time, in my other blogs, there are other synthetic methods of this type of compound,60290-21-3, 4-Chloro-1H-pyrrolo[3,2-c]pyridine, and friends who are interested can also refer to it.

Application of 60290-21-3, 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. 60290-21-3, name is 4-Chloro-1H-pyrrolo[3,2-c]pyridine. A new synthetic method of this compound is introduced below.

To a solution of 4-chloro-lH-pyrrolo[3,2-c]pyridine (XCVI) (13.3 g, 87.2 mmol, 1.0 eq) and (3-fluorophenyl)boronic acid (XCVII) (1.59 g, 113.3 mmol, 1.3 eq) in a solution of dioxane (80 mL) and water (27 mL) was added K3PO4 (46.3 g, 218 mmol, 2.5 eq) in one portion at 25C under N2. Then Pd(dppf)Cl2 (5.1 g, 6.97 mmol, 0.08 eq) was added under N2 atmosphere. The yellow solution was heated to 90-100C and stirred for 2 h. The reaction was added into water (500 mL), and the resultant solution was extracted with EtOAc (300 mL x 3). The organic layers were washed with brine (200 mL), dried over Na2S04 and concentrated to give a residue. The residue was purified by chromatography on silica gel to give 4-(3-fluorophenyl)-lH-pyrrolo[3,2- c]pyridine (XCVIII) as a red solid (10.9 g, 51.4 mmol, 58.9% yield). NMR (DMSO-£, 400 MHz) delta ppm 6.80 (s, IH), 7.24 – 7.33 (m, IH), 7.42 (d, J=6Hz, IH), 7.52 – 7.63 (m, 2H), 7.76 (d, J=8Hz, IH), 7.87 (d, J=7.6Hz, IH), 8.28 (d, J=5.6Hz, IH), 11.71 (brs, IH); ESIMS found for C13H9FN2 mlz 213.1 (M+H).

At the same time, in my other blogs, there are other synthetic methods of this type of compound,60290-21-3, 4-Chloro-1H-pyrrolo[3,2-c]pyridine, and friends who are interested can also refer to it.

Reference:
Patent; SAMUMED, LLC.; KC, Sunil Kumar; WALLACE, David Mark; CAO, Jianguo; CHIRUTA, Chandramouli; HOOD, John; (265 pag.)WO2017/24010; (2017); A1;,
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Introduction of a new synthetic route about 3-Nitropyridin-4-ol

The synthetic route of 5435-54-1 has been constantly updated, and we look forward to future research findings.

Reference of 5435-54-1 , The common heterocyclic compound, 5435-54-1, name is 3-Nitropyridin-4-ol, molecular formula is C5H4N2O3, 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.

4-Hydroxy-3-nitropyridine (10.0 g, 71.4 mmol) is added portionwise to a mechanically stirred mixture of phosphorous pentachloride (16.32 g, 78.6 mmol) and phosphorous oxychloride (16.2 mL) at 55-60 C. After the addition is complete, the temperature is raised to 130-140 C. for 4 hr. After cooling to room temperature, the phosphorous oxychloride is removed and the residue is cautiously treated with ice/water, made basic with sodium carbonate and extracted with ether. The combined extract is dried, filtered and concentrated to yield 4-chloro-3-nitropyridine (5.1 g, 45% yield) as a pale yellow solid.

The synthetic route of 5435-54-1 has been constantly updated, and we look forward to future research findings.

Reference:
Patent; Aventis Pharmaceuticals Inc.; US2005/54631; (2005); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Extended knowledge of 6313-54-8

According to the analysis of related databases, 6313-54-8, the application of this compound in the production field has become more and more popular.

Reference of 6313-54-8, As we all know, there are many different methods for the synthesis of a compound, and people can choose the synthesis method that suits their own laboratory according to the actual situation. 6313-54-8, name is 2-Chloroisonicotinic acid, molecular formula is C6H4ClNO2, The compound is widely used in many fields, so it is necessary to find a new synthetic route. The downstream synthesis method of this compound is introduced below.

Step 1 Preparation of Methyl-2-chloroisonicotinate To a solution of thionyl chloride (13.85 mL, 190.38 mmol) in toluene (50 mL) was added 2-chloropyridine-4-carboxylic acid (15 g, 95 mmol). The solution was heated to reflux for 3 hours. The resulting brown color solution was cooled to room temperature, and methanol (11.56 mL, 285.6 mmol) was added slowly dropwise. The mixture was brought to reflux for 15 minutes and became clear. The solution was then cooled to room temperature and poured into water (150 mL), basified with 50 percent sodium hydroxide and extracted with ethyl acetate (2*200 ml). The organic layer was separated and washed with brine, dried with magnesium sulfate, filtered and concentrated to yield the titled compound (11.93 g, 73percent) as a brown color solid. This was used in the next step without further purification.

According to the analysis of related databases, 6313-54-8, the application of this compound in the production field has become more and more popular.

Reference:
Patent; Pharmacia Corporation; US6509361; (2003); B1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Some tips on 2-Methoxy-6-methylpyridine

At the same time, in my other blogs, there are other synthetic methods of this type of compound,63071-03-4, 2-Methoxy-6-methylpyridine, and friends who are interested can also refer to it.

Adding a certain compound to certain chemical reactions, such as: 63071-03-4, 2-Methoxy-6-methylpyridine, 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, HPLC of Formula: C7H9NO, blongs to pyridine-derivatives compound. HPLC of Formula: C7H9NO

Example given for n = 7: An oven dried round bottom flask, equipped with magnetic stir bar was sealed under argon. To the flask, THF (10 mL) and n-BuLi (2.4 M in hexanes, 2.0 mL, 4.8 mmol) were added and cooled to 0 oC. To this flask, 2-methoxy-6-methylpyridine (0.50 mL, 4.1 mmol) was added drop wise via syringe, which resulted in a yellow color that intensified to brown over a few min. After 10 min, 1,6-dibromohexane (2.0 mL, 13 mmol) was added in one portion and the color rapidly dissipated. After an additional 2 h, the reaction was quenched upon addition of water. The phases were separated and the aqueous phase was extracted with ethyl acetate. The combined organic phases were washed with brine, dried (MgSO4) and concentrated in vacuo. Final purification by column chromatography (0% -15% ethyl acetate in hexanes) afforded the desired compound (397 mg, 34%) along with the dimer 1,8-bis(6-methoxypyridin-2-yl)octane (180 mg, 27%).

At the same time, in my other blogs, there are other synthetic methods of this type of compound,63071-03-4, 2-Methoxy-6-methylpyridine, and friends who are interested can also refer to it.

Reference:
Article; Topczewski, Joseph J.; Lodge, Alexander M.; Yasapala, Sumana N.; Payne, Maurice K.; Keshavarzi, Pedrom M.; Quinn, Daniel M.; Bioorganic and Medicinal Chemistry Letters; vol. 23; 21; (2013); p. 5786 – 5789;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Share a compound : 571189-49-6

With the rapid development of chemical substances, we look forward to future research findings about 571189-49-6.

As we all know, there are many different methods for the synthesis of a compound, and people can choose the synthesis method that suits their own laboratory according to the actual situation. 571189-49-6, name is 5-(4-Methylpiperazin-1-yl)pyridin-2-amine, molecular formula is C10H16N4, The compound is widely used in many fields, so it is necessary to find a new synthetic route. The downstream synthesis method of this compound is introduced below. Application In Synthesis of 5-(4-Methylpiperazin-1-yl)pyridin-2-amine

A solution of 5-(4-methylpiperazin-1-yl)pyridin-2-amine (172 mg, 0.90 mmol), 4-bromo-6-chloro-2-methylpyridazin-3(2H)-one (200 mg, 0.90 mmol) cesium carbonate (1.02 g, 3.13 mmol) and 4,5-bis(diphenylphosphino)-9,9-dimethlxanthene (77.7 mg, 0.13 mmol) in dioxane (10 ml) was flushed with argon before tris(dibenzylideneacetone)dipalladium(0) (61.5 mg, 0.07 mmol) was added and the resulting solution was heated at 90 C. for 18 h. The mixture was cooled to room temperature and diluted with dichloromethane and water. The layers were separated and the aqueous layer was extracted with dichloromethane (2*25 mL). The organic layers were combined, dried over magnesium sulfate. The resulting mixture was filtered and concentrated in vacuo. The residue was triturated with methanol and dichloromethane and filtered, washed with ether and dried to give 6-chloro-4-[5-(4-methyl-piperazin-1-yl)-pyridin-2-ylamino]-2-methyl-2H-pyridazin-3-one (223 mg, 74%) as a yellow solid.

With the rapid development of chemical substances, we look forward to future research findings about 571189-49-6.

Reference:
Patent; Berthel, Steven Joseph; Billedeau, Roland Joseph; Brotherton-Pleiss, Christine E.; Firooznia, Fariborz; Gabriel, Stephen Deems; Han, Xiaochun; Hilgenkamp, Ramona; Jaime-Figueroa, Saul; Kocer, Buelent; Lopez-Tapia, Francisco Javier; Lou, Yan; Orzechowski, Lucja; Owens, Timothy D.; Tan, Jenny; Wovkulich, Peter Michael; US2012/40949; (2012); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Extracurricular laboratory: Synthetic route of 886365-28-2

With the rapid development of chemical substances, we look forward to future research findings about 886365-28-2.

The major producers of chemicals have been the Europe, Japan and China. Due to the growing call for a cleaner, greener environment, people will have to find innovative ways to maintain their relevance. Here is a compound 886365-28-2, name is Methyl 5-bromo-2-chloroisonicotinate. This compound has unique chemical properties. The synthetic route is as follows. SDS of cas: 886365-28-2

Methyl 5-bromo-2-chloro isonicotinate (30 g, 120 mmol) was dissolved in 1,4-dioxane (300 mL), and 3,5-dimethoxyphenylacetylene (20.4 g, 120 mmol), CuI (2.28 g, 12 mmol), Pd(dppf)Cl2 (4.2 g, 6 mmol) and Et3N (12.0 g, 120 mmol) were added, and the mixture was heated to 60 C. under N2, for 6 h. The reaction was complete, and the mixture was filtered and concentrated. The crude product was separated by silica gel column chromatography (DCM:PE=20:1) to obtain compound methyl 2-chloro-5-((3,5-dimethoxyphenyl)ethynyl)isonicotinate (22 g, yield: 55%). MS (ESI): m/z 332.1 [M+1]+.

With the rapid development of chemical substances, we look forward to future research findings about 886365-28-2.

Reference:
Patent; Abbisko Therapeutics Co., Ltd.; YANG, Fei; DENG, Haibing; YING, Haiyan; YU, Hongping; CHEN, Zhui; XU, Yaochang; (604 pag.)US2019/270742; (2019); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Simple exploration of 72587-15-6

According to the analysis of related databases, 72587-15-6, the application of this compound in the production field has become more and more popular.

Synthetic Route of 72587-15-6, The major producers of chemicals have been the Europe, Japan and China. Due to the growing call for a cleaner, greener environment, people will have to find innovative ways to maintain their relevance. Here is a compound 72587-15-6, name is 2-Chloro-3-nitro-5-(trifluoromethyl)pyridine. This compound has unique chemical properties. The synthetic route is as follows.

Production Method of 2-Methyl-1-phenylpropan-2-yl 3-(3-ethylthio-5-trifluoromethylpyridin-2-yl)-2-(3-nitro-5-trifluoromethylpyridin-2-yl)-3-oxo-propionate Sodium hydride (240 mg, 3 Eq) was dissolved in DMA (dimethylacetamide) (2 mL). Under ice cooling, a DMA solution (2 mL) of 2-methyl-1-phenylpropan-2-yl 3-(3-ethylthio-5-trifluoromethylpyridin-2-yl)-3-oxo-propionate (895 mg, 2 mmol) was slowly added to the solution, and the mixture was stirred for 30 minutes. After that, a DMA solution (2 mL) of 2-chloro-3-nitro-5-trifluoromethylpyridine (454 mg, 1 Eq) was slowly added, and the mixture was stirred at room temperature for 4.5 hours. Water and 3 N hydrochloric acid were added to the reaction mixture, and ethyl acetate extraction was performed. The organic layer was concentrated and the residue was subjected to column chromatography to give the desired compound, i.e., 2-methyl-1-phenylpropan-2-yl 3-(3-ethylthio-5-trifluoromethylpyridin-2-yl)-2-(3-nitro-5-trifluoromethylpyridin-2-yl)-3-oxo-propionate (653 mg, containing about 20% nitropyridine (starting material)).

According to the analysis of related databases, 72587-15-6, the application of this compound in the production field has become more and more popular.

Reference:
Patent; Nihon Nohyaku Co., Ltd.; Yonemura, Ikki; Sano, Yusuke; Suwa, Akiyuki; Fujie, Shunpei; US2018/352811; (2018); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Analyzing the synthesis route of 1289093-31-7

At the same time, in my other blogs, there are other synthetic methods of this type of compound,1289093-31-7, 5-Bromo-3-chloro-2-isobutoxypyridine, and friends who are interested can also refer to it.

Application of 1289093-31-7, 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. 1289093-31-7, name is 5-Bromo-3-chloro-2-isobutoxypyridine. A new synthetic method of this compound is introduced below.

Preparation 32: 3-Chloro-2-isobutoxy-5-(4 A5,5-tetramethyl-H ,3,21dioxaborolan-2- -pyridine; Method (i):; To a dry flask was added 5-bromo-3-chloro-2-isobutoxy-pyridine [preparation 30] (825mg, 3.12mmol), KOAc (918mg, 9.35mmol), bis- pinocolatodiboronate (989mg, 3.90mmol) and Pd(dppf)2CI2 (127mg, 0.156mmol) followed by DMF (10ml). The mixture was degassed twice by evacuating and filling with nitrogen and heated at 80C for 6 hours under nitrogen. The reaction mixture was partitioned between EtOAc (30ml) and water (30ml), and the organics washed with brine (20ml), dried over MgS04, filtered and concentrated in vacuo. Purification by column chromatography (ISCO Companion, 40g, heptane – 30% EtOAc:heptane) gave the desired product as a colourless oil (227mg).1 H NM (400 MHz, CDCI3) delta ppm 1 .04 (d, J=6.64 Hz, 6 H) 1 .34 (s, 12 H) 2.09 – 2.21 (m, 1 H) 4.18 (d, J=6.64 Hz, 2 H) 7.97 (d, J=1 .56 Hz, 1 H) 8.37 (d, J=1 .56 Hz, 1 H) impurities present

At the same time, in my other blogs, there are other synthetic methods of this type of compound,1289093-31-7, 5-Bromo-3-chloro-2-isobutoxypyridine, and friends who are interested can also refer to it.

Reference:
Patent; PFIZER LIMITED; BELL, Andrew Simon; DE GROOT, Marcel John; LEWTHWAITE, Russell Andrew; MARSH, Ian Roger; SCIAMMETTA, Nunzio; STORER, Robert Ian; SWAIN, Nigel Alan; WO2012/95781; (2012); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

New learning discoveries about 74784-70-6

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route,74784-70-6, its application will become more common.

Application of 74784-70-6, 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 74784-70-6 as follows.

To a de-gassed mixture of 3- [3- (trifluoromethyl) pyridin-2-yl] pyrido [2,3-b] pyrazin-8- amine (72 mg, 0.25 MMOL), cesium carbonate (162 mg, 0.5 mmol), 2-amino-trifluoromethyl pyridine (45 mg, 0.25 mmol) in dioxane (5 mL) under nitrogen, add PD2DBA3 (11 mg) and xantphos (7 MG). Stir the mixture AT 100C for 3 hours, cool, add water (10 mL) and extract with EtOAc. Dry over NA2SO4, concentrate under vacuum. Purify by chromatography eluting with DICHLOROMETHANE/METHANOL/AMMONIUM hydroxide mixture to give the title compound. MS 437 (M + 1).’H NMR 6 (CDCI3) 9.42 (1H, s), 9.28 (1H, s), 9.11 (1H, d), 8.95 (1H, d), 8. 90 (IH, d), 8.72 (1H, s), 8.25 (1H, d), 7.89 (1H, d), 7.61 (1H, dd), 7.13 (1H, d).

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route,74784-70-6, its application will become more common.

Reference:
Patent; NEUROGEN CORPORATION; WO2005/7652; (2005); A2;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem

Analyzing the synthesis route of 78686-79-0

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route,78686-79-0, its application will become more common.

Electric Literature of 78686-79-0, 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. 78686-79-0, name is Methyl 5-bromo-2-chloronicotinate. A new synthetic method of this compound is introduced below.

Compounds are represented in generic form, with sub stituents as noted in compound descriptions elsewhere herein. A more specific example is set forth below. In one aspect, ethers of type 6.7 can be prepared beginning with the commercially available 5-bromo-2-chloronicotinic acid, which is converted to the corresponding ester by reaction with methanol in the presence of an acid such as hydrochloric acid to yield compound 6.2. Alkylation to provide compound 6.3 is accomplished by use of a Suzuki cross coupling reaction using potassium allyltrifluoroborate in the presence of [1,1′-Bis(diphenylphosphino)ferrocene]dichloropalladium(II). Reaction with 4-methoxybenzylamine affords compound 6.4. A cross-coupling reaction between compound 6.4 and benzyl alcohol in the presence of CuI, Cs2CO3, and a diamine ligand yields the aryl ether, compound 6.5. The p-methoxybenzyl protecting group is removed using cerium(IV) ammonium nitrate (CAN), followed by reduction of the carbonyl using lithium aluminum hydride. The amide, compound 6.7, is formed by reaction of the 3-(benzyloxy)-5,6,7,8-tetrahydro-1,6-naphthyridine, formed in the previous step, with benzoyl chloride.

These compound has a wide range of applications. It is believed that with the continuous development of the source of the synthetic route,78686-79-0, its application will become more common.

Reference:
Patent; Conn, P. Jeffrey; Lindsley, Craig W.; Stauffer, Shaun R.; Manka, Jason; Jacobs, Jon; Zhou, Ya; Bartolome-Nebreda, Jose Manuel; Macdonald, Gregor James; Conde-Ceide, Susana; Dawson, Eric S.; US2012/178776; (2012); A1;,
Pyridine – Wikipedia,
Pyridine | C5H5N – PubChem