Some tips on 141556-45-8

As the paragraph descriping shows that 141556-45-8 is playing an increasingly important role.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.141556-45-8,1,3-Dimesityl-1H-imidazol-3-ium chloride,as a common compound, the synthetic route is as follows.

Tris [4- (pyridin-4-yl) phenyl] amine compound (47.6 mg, 0.10 mmol)1,3-bis (2,4,6-trimethylphenyl) imidazole chloride(IMes. HCl) (102.1 mg, 0.30 mmol),PdCl2 (53.2 mg, 0.30 mmol)And potassium carbonate (41.5 mg, 0.30 mmol) were added to a 25 mL single neck flask,Tetrahydrofuran (5 mL) was then added,The reaction was stirred at 75 C for 14 h under argon atmosphere.Stop the reaction,Cool to room temperature,concentrate,Thin layer chromatography to give compound II,Yield 50%., 141556-45-8

As the paragraph descriping shows that 141556-45-8 is playing an increasingly important role.

Reference£º
Patent; Shangqiu Normal University; Wang Tao; Xu Kai; Liu Lantao; Zhao Wenxian; Liu Shuang; Li Feng; Meng Tuanjie; Xie Huanping; (12 pag.)CN105131044; (2017); B;,
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Analyzing the synthesis route of 137848-28-3

The synthetic route of 137848-28-3 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.137848-28-3,(R)-2′-amino-[1,1′-binaphthalen]-2-ol,as a common compound, the synthetic route is as follows.

General procedure: To a mixture of 3,4-dimethoxy-3-cyclobutene-1 ,2-dione (Ia) (0.2 mmol) in MeOH (0.25- 1 mL) the amine 2a-m was firstly added at room temperature. After the correspondingreaction time (ti) (see Table I), the amine 4a-n (0.2 mmol) was then added with MeOH (1.75-1 mL). After the corresponding reaction time (t2) (see Table I and Table Ibis), the product was purified by filtration or by column chromatography. Yields are reported in Table I and Table Ibis and pure compounds were obtained as stable solids., 137848-28-3

The synthetic route of 137848-28-3 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; UNIVERSIDAD DE ZARAGOZA; CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS (CSIC); MARQUEZ LOPEZ, Maria Eugenia; ALEGRE REQUENA, Juan Vicente; PEREZ HERRERA, Raquel; (70 pag.)WO2016/5407; (2016); A1;,
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New learning discoveries about 173035-10-4

173035-10-4, The synthetic route of 173035-10-4 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.173035-10-4,1,3-Dimesityl-4,5-dihydro-1H-imidazol-3-ium chloride,as a common compound, the synthetic route is as follows.

General procedure: [HIPr]2[PdCl4]: 0.45 g (1.0 mmol) of [HIPr]Cl was added to thesolution of 0.14 g (0.48 mmol) PdCl2(cod) in hot CH3CN (5 mL). Themixture was heated for 15 min, until the yellow solution becamered. The solution was cooled to room temperature and solventwas removed under reduced pressure. The product was precip-itated by addition of diethyl ether (2-3 mL). Product yield: 85%;elemental analysis calcd. (%) for PdCl4C54H78N4: C 62.88, H 7.62,N 5.46; found: C 62.37, H 7.46, N 5.40.1H NMR(500 MHz, CD3CN,25C, TMS): = 8.49 (s, 2H, N CH N); 7.57 (t, J(H,H) = 7.8 Hz, 4H,Ar); 7.42 (d, J(H,H) = 7.8 Hz, 8H, Ar); 4.48 (s, 8H, CH2CH2); 3.10(m, J(H,H) = 6.9 Hz, 8H, CH); 1.40 (d, J(H,H) = 6.9 Hz, 24H, CH3); 1.26(d, J(H,H) = 6.9 Hz, 24H, CH3,);13C NMR (125.75 MHz, CD3CN, 25C,TMS): = 160.0 (N CH N); 147.2 (Ar); 131.0 (Ar); 125.5 (Ar); 53.7(CH2CH2); 28.5 (CH); 24.0 (CH3); 23.5 (CH3).

173035-10-4, The synthetic route of 173035-10-4 has been constantly updated, and we look forward to future research findings.

Reference£º
Article; Silarska; Trzeciak; Pernak; Skrzypczak; Applied Catalysis A: General; vol. 466; (2013); p. 216 – 223;,
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Some tips on 63126-47-6

As the paragraph descriping shows that 63126-47-6 is playing an increasingly important role.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.63126-47-6,(S)-2-(Methoxymethyl)pyrrolidine,as a common compound, the synthetic route is as follows.,63126-47-6

Step 8: 7-Chloro-8-{[(2S)-2-(methoxymethyl)pyrrolidin-1-yl-]sulfonyl}-3,4-dihydropyrimido[1,2-a]indol-10(2H)-one To a solution of 7-chloro-10-oxo-2,3,4,10-tetrahydropyrimido[1,2-a]indole-8-sulfonyl chloride (0.140 g, 0.439 mmol) in CH2Cl2 (10 mL) was added (S)-(+)-2-(methoxymethyl)pyrrolidine (0.119 g, 0.965 mmol, 2.2 eq) drop-wise with cooling in an ice bath under a dry N2 atmosphere. After stirring at room temperature for 1.5 hr, the mixture was quenched with H2O (10 mL) and extracted with EtOAc (3*). The combined organic extracts were dried over MgSO4, filtered, and concentrated to give a film on glass. The film was combined with the product of an earlier run and purified on Biotage KP silica gel eluding with a step gradient of 20/80 petroleum ether/EtOAc, followed by 100percent EtOAc to give the title compound as a bright yellow solid (0.104 g, 52.3percent yield). Anal. Calc’d. for C17H20ClN3O4S. 0.2H2O: C, 50.86; H, 5.12; N, 10.47; Found, C, 50.82; H, 5.00; N, 10.31; NMR (400 MHz, DMSO-d6): consistent. MS: (ES-) m/z 396/398 [M-H] 1 chlorine pattern observed. m.p.: 127-130¡ã C. HRMS: consistent ESI Adduct [M+H]Exact 398.09358, Expt’l 398.09411, mmu 0.53, ppm 1.34, RIpercent 100.

As the paragraph descriping shows that 63126-47-6 is playing an increasingly important role.

Reference£º
Patent; Wyeth; US2005/250798; (2005); A1;,
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Brief introduction of 250285-32-6

250285-32-6 1,3-Bis(2,6-diisopropylphenyl)imidazolium chloride 2734913, achiral-catalyst compound, is more and more widely used in various fields.

250285-32-6, 1,3-Bis(2,6-diisopropylphenyl)imidazolium chloride is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: A 20 mL vial was charged with the NHC¡¤HCl (300 mg, 1 equiv.) and the zinc salt (1 equiv.). Tetrahydrofuran (5 mL) was added, the vial was sealed with a screw-cap and the reaction was stirred at 60C for two hours. The mixture was allowed to reach room temperature and the solvent was removed under reduced pressure toafford the desired product., 250285-32-6

250285-32-6 1,3-Bis(2,6-diisopropylphenyl)imidazolium chloride 2734913, achiral-catalyst compound, is more and more widely used in various fields.

Reference£º
Article; Santoro, Orlando; Nahra, Fady; Cordes, David B.; Slawin, Alexandra M.Z.; Nolan, Steven P.; Cazin, Catherine S.J.; Journal of Molecular Catalysis A: Chemical; vol. 423; (2016); p. 85 – 91;,
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Brief introduction of 14098-24-9

14098-24-9, 14098-24-9 Benzo-18-crown 6-Ether 585779, achiral-catalyst compound, is more and more widely used in various fields.

14098-24-9, Benzo-18-crown 6-Ether is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: The carbonyl substrate (0.1 g) is dissolved in 1-2 mL of anhydrous CHCl3 and 2.0 equiv of a benzocrown ether is added to the solution. To this mixture, CF3SO3H (8.0 equiv; H2SO4 may be used in some cases) is added dropwise with stirring. The reaction is stirred at room temperature for at least 2 h, after which, the mixture is poured over several grams of ice. The resulting solution is extracted three times with CHCl3. The organic phase is subsequently washed three times with water and dried over MgSO4 solution. Removal of the solvent provides the product.

14098-24-9, 14098-24-9 Benzo-18-crown 6-Ether 585779, achiral-catalyst compound, is more and more widely used in various fields.

Reference£º
Article; Zielinski, Matthew E.; Tracy, Adam F.; Klumpp, Douglas A.; Tetrahedron Letters; vol. 53; 14; (2012); p. 1701 – 1704;,
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Downstream synthetic route of 22795-99-9

The synthetic route of 22795-99-9 has been constantly updated, and we look forward to future research findings.

22795-99-9, (S)-(1-Ethylpyrrolidin-2-yl)methanamine is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

22795-99-9, In a 100 mL eggplant bottle, 1.22 g of benzaldehyde, 30 mL of anhydrous ethanol,(S) -1-ethyl-2-aminomethyltetrahydropyrroline, and the mixture was heated under reflux for 24 hours.Add 0.76 g of sodium borohydride, stir for 3 hours, cool to room temperature, pour into water,The organic phase was extracted with methyl chloride and dried over anhydrous magnesium sulfate to remove the solvent to give a pale yellow viscous liquid.Adding 30 mL of absolute ethanol, 0.6 g of paraformaldehyde,2-trityl-4-di-tert-butylphenol, and the mixture was heated under reflux for 12 hours.The crude product was chromatographed on silica gel to afford L4 (3.96 g, 68.2percent) as a white solid.

The synthetic route of 22795-99-9 has been constantly updated, and we look forward to future research findings.

Reference£º
Patent; East China University of Science and Technology; Ma, HaiYan; Wang, haobing; (35 pag.)CN103787943; (2016); B;,
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Extracurricular laboratory: Synthetic route of 33100-27-5

As the rapid development of chemical substances, we look forward to future research findings about 33100-27-5

1,4,7,10,13-Pentaoxacyclopentadecane, cas is 33100-27-5, it is a common heterocyclic compound, the chiral-catalyst compound, its synthesis route is as follows.,33100-27-5

[0083] (S) N-(Acetoxymethyl)-N-[(1R,2S,5R)-menthyloxycarbonyl]-4-(1,4,7,10-tetraoxa-13-azacyclopentadecan-13-yl)homoalanine methyl ester (53): A solution of the aldehyde (40) (78 mg, 0.20 mmol) in dry dichloroethane (3 mL) wastreated with 1-aza-15-crown-5 (58 mg, 0.26 mmol) and triethylamine (38 mL, 0.27 mmol) and stirred for 10 min. at 26¡ãC. Then sodium (triacetoxy)borohydride (69 mg, 0.32 mmol) was added and the stirring continued for 2.5 h. After usualwork-up and concentration, the residue was purified by rotatory chromatography (hexane/EtOAc, 98:2), yielding theproduct (53) (108 mg, 91percent) as a yellowish slurry: [alpha]D =-51.22 (c 0.41, CHCl3); 1H NMR (500 MHz, CDCl3, 70 ¡ãC) deltaH0.77 (3H, d, J = 6.9 Hz, Me), 0.80-0.90 (1 H, m, 4?-Ha), 0.88 (3H, d, J = 7.3 Hz, Me), 0.89 (3H, d, J = 6.6 Hz, Me), 0.96(1 H, m, 6?-Hb), 1.05 (1 H, m, 3?-Ha), 1.36 (1 H, m, 2?-H), 1.55 (1 H, m, 5?-H), 1.62-1.69 (2H, m, 4?-Hb + 3?-Hb), 1.86 (1H, m, 2″-H), 1.96 (1 H, m, 3-Ha), 2.00 (3H, s, Ac), 2.02 (1 H, m, 6?-Ha), 2.23 (1 H, m, 3-Hb), 2.57-2.69 (2H, m, 4-H2),2.72-2.82 (4H, m, 2 x CH2N), 3.58-3.64 (16H, m, 8 x CH2O), 3.66 (3H, s, OMe), 4.52 (1 H, br b, 2-H), 4.60 (1 H, ddd, J= 4.4, 10.8, 11.0 Hz, 1?-H), 5.35 (1 H, br d, J = 11.0 Hz, OCHaN), 5.45 (1 H, d, J = 11.0 Hz, OCHbN); 13C NMR (125.7MHz, CDCl3, 70 ¡ãC) deltaC 16.3 (CH3), 20.7 (CH3), 21.8 (CH3), 23.6 (CH2), 25.9 (CH), 28.0 (CH2), 31.4 (CH), 34.3 (CH2),41.1 (CH2), 47.4 (CH), 51.9 (CH3), 53.0 (CH2), 54.7 (2 x CH2), 58.3 (CH), 69.8 (2 x CH2), 70.3 (2 x CH2), 70.6 (2 x CH2),71.1 (2 x CH2), 76.7 (CH), 155.3 (C), 170.3 (C), 171.7 (C); MS (EI) m/z (relative intensity) 588 (M+, 1), 545 (M+ – CHMe2, 2), 529 (M+ – OAc, 4), 232 ([1-methylen-1-aza-15-crown-5]+, 100. HRMS calcd for C29H52N2O10, 588.3622, found588.3626; calculated for C26H45N2O10, 545.3074, found 545.3077; calculated for C25H41N2O10, 529.2761, found529.2758; calculated for C11H22NO4, 232.1549, found 232.1542. Elemental analysis: Calculated for C29H52N2O10: C,59.16; H, 8.90; N, 4.76; found C, 59.24; H, 8.90; N, 4.88.

As the rapid development of chemical substances, we look forward to future research findings about 33100-27-5

Reference£º
Patent; Consejo Superior De Investigaciones Cientificas (CSIC); ROMERO ESTUDILLO, Ivan Omar; BOTO CASTRO, Alicia; EP2957555; (2015); A1;,
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Extracurricular laboratory: Synthetic route of 173035-10-4

As the rapid development of chemical substances, we look forward to future research findings about 173035-10-4

1,3-Dimesityl-4,5-dihydro-1H-imidazol-3-ium chloride, cas is 173035-10-4, it is a common heterocyclic compound, the chiral-catalyst compound, its synthesis route is as follows.,173035-10-4

Synthesis of [(SIMes)CuCl]. This synthesis is as reported in the literature; see S. Diez-Gonzalez et al., J. Org. Chem. 2005, 70, 4784-4796. In a 250 mL Schlenk flask were added copper(I) chloride (1.0 g, 10.10 mmol), 1,3-bis(2,4,6-trimethylphenyl)-4,5-dihydro-imidazol-2-ylidenium chloride (SIMes-HCl, 10.10 mmol), and sodium tert-butoxide (0.97 g, 10.10 mmol). To this flask, dry tetrahydrofuran (100 mL) was added under an inert atmosphere of argon, and the mixture was magnetically stirred for 20 hours at room temperature. After the mixture was filtered through a plug of Celite and then evaporating the solvent under vacuum, a white solid was obtained. 1H NMR (400 MHz, CDCl3) delta=6.96 (s, 4H), 3.96 (s, 4H), 2.32 (s, 12H), 2.30 (s, 6H); 13C NMR (100 MHz, CDCl3) delta=202.8, 138.7, 135.3, 135.0, 129.7, 50.9, 21.0, 18.0. Elemental analysis calcd for C21H26CuClN2: C, 62.21; H, 6.46; N, 6.91. Found: C, 62.60; H, 6.52; N, 6.80%.

As the rapid development of chemical substances, we look forward to future research findings about 173035-10-4

Reference£º
Patent; Institut Catala d’Investigacio Quimica; Institucio Catalana de Recerca i Estudis Avancats; US2009/69569; (2009); A1;,
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Simple exploration of 173035-10-4

As the paragraph descriping shows that 173035-10-4 is playing an increasingly important role.

173035-10-4, 1,3-Dimesityl-4,5-dihydro-1H-imidazol-3-ium chloride is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: An oven-dried Schlenk flask was charged with NHC salt 1 (2.49mmol) and evacuated for 30 min. The flask was then transferredinto a nitrogen-filled glove box and isolated KH (2.49 mmol)was added. The flask was then attached to a Schlenk line(argon/vacuum), evacuated once, and filled with argon. AnhydrousTHF (30 mL) was added, and the slow evolution of hydrogenwas observed. The resulting solution was then allowed tostir for 20 h at r.t. after which time the reaction mixture was filteredthrough a dry filter stick into an oven-dried Schlenk flask.The THF was evaporated, and the resulting free carbene wasextracted into anhydrous toluene (30 mL). The resulting toluenesolution was filtered through another dry filter stick into a previouslyevacuated and oven-dried Schlenk flask containing[(cod)Ir(py)2]PF6 (2, 1.66 mmol). The reaction was allowed tostir for 2 d at r.t. under an argon atmosphere. After this time, themixture was filtered to yield the desired iridium complex 3., 173035-10-4

As the paragraph descriping shows that 173035-10-4 is playing an increasingly important role.

Reference£º
Article; Cross, Paul W. C.; Herbert, John M.; Kerr, William J.; McNeill, Alan H.; Paterson, Laura C.; Synlett; vol. 27; 1; (2016); p. 111 – 115;,
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