Simple exploration of 141556-45-8

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

141556-45-8, 1,3-Dimesityl-1H-imidazol-3-ium chloride is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

Under the protection of nitrogen, to the reaction tube is sequentially added imidazole salt IMes¡¤HCl (1.1mmol), palladium chloride (1.0mmol), potassium carbonate (2.2mmol), tetrahydrofuran (5.0 ml) and isoquinoline (2.0mmol). The mixture is placed in the oil bath heated reaction (80 C) 12 hours. Stopping the reaction, cooling to room temperature, pressure reducing turns on lathe does solvent, rapid column chromatography separation to obtain a yellow solid product 0.0927g, yield 76%.

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

Reference£º
Patent; Wenzhou University; Shao Lixiong; Lu Jianmei; Liu Feng; (23 pag.)CN106892945; (2017); A;,
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Brief introduction of 1121-22-8

1121-22-8, 1121-22-8 trans-Cyclohexane-1,2-diamine 43806, achiral-catalyst compound, is more and more widely used in various fields.

1121-22-8, trans-Cyclohexane-1,2-diamine is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: Aldehyde (2.2 mmol, salicylaldehyde or 4-methoxysalicylaldehyde, 4-diethylamino-2-hydroxy benzaldehyde or 2,4-dihydroxybenzaldehyde) was dissolved in ethanol (30 ml) and stirred at room temperature. To this solution, either ethylene diamine (1 mmol) or trans-1,2-diaminocyclohexane (1 mmol) was added drop-wise under stirring. The immediate appearance of yellow colour indicates the formation of Schiff bases. The solution was allowed to stir for another 6 h at room temperature that produced yellow to light yellow coloured precipitates. The formed precipitate was filtered off, washed with ethanol and dried under vacuum.

1121-22-8, 1121-22-8 trans-Cyclohexane-1,2-diamine 43806, achiral-catalyst compound, is more and more widely used in various fields.

Reference£º
Article; Hariharan; Anthony, Savarimuthu Philip; Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy; vol. 136; PC; (2015); p. 1658 – 1665;,
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Application of 23190-16-1

As the rapid development of chemical substances, we look forward to future research findings about 23190-16-1

A common heterocyclic compound, the chiral-catalyst compound, name is (1R,2S)-2-Amino-1,2-diphenylethanol,cas is 23190-16-1, mainly used in chemical industry, its synthesis route is as follows.,23190-16-1

A solution of (Boc)2O (44 mmol) in THF (50ml) was added to the mixture of the amino alcohol (40 mmol) and sodium carbonate (80 mmol) in THF/H2O (1/1, 300 ml) at O0C. The mixture was stirred at O0C for Ih and then at room temperature for another two 2h (TLC was used to monitor the reactions). Water (200 ml) was added to the mixture upon completion. The organic layer was separated and the aqueous layer was extracted with ethyl acetate (200 ml). The combined organic layers was washed with brine (300 ml) and dried with anhydrous MgSO4 for Ih. It was then filtered and the solvent was removed under vacuum to give the product (yield = 90 – 99 %). It was sufficiently pure for the next step. The pure product was obtained by recrystallization from the THF and hexane, or by purification with silica gel chromatography.Example 2.1: Tert-butyl (lS,2R)-2-hydroxy-l,2-diphenylethylcarbamatePh PhBocHN OHYield: 90 %. 1H NMR (CD2Cl2): delta 7.25-7.27 (m, 6H), 7.08-7.1 1 (m, 4H), 5.33 (m, IH), 5.04 (m, IH), 4.92 (b, IH), 2.60 (b, IH), 1.38 (s, 9H).

As the rapid development of chemical substances, we look forward to future research findings about 23190-16-1

Reference£º
Patent; KANATA CHEMICAL TECHNOLOGIES INC.; WO2008/148202; (2008); A1;,
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Application of 1121-22-8

As the rapid development of chemical substances, we look forward to future research findings about 1121-22-8

A common heterocyclic compound, the chiral-catalyst compound, name is trans-Cyclohexane-1,2-diamine,cas is 1121-22-8, mainly used in chemical industry, its synthesis route is as follows.,1121-22-8

General procedure: Salen ligands were obtained in the stoichiometric reaction of salicylic aldehyde and trans-1,2-diaminocyclohexane in 96% ethanol solution according to [13c]. Reactions were carried out in 50 ml three-neck round-bottomed flask, equipped with reflux condenser, dropping funnel, magnetic stirrer and heating mantle. The solution of trans-1,2-diaminocyclohexane (0,57 ml, 5 mmol) in EtOH (10 ml) was slowly added to a hot solution of appropriate aldehyde (10 mmol) in EtOH (20 ml). The reaction mixture was heated at reflux for 1.5 h. After cooling to room temperature, the yellow precipitate that formed was filtered off and washed with cold EtOH (5 ml). The ligands were used without further purification. (¡À)-trans-N,N-bis(3,5-di-tert-butylsalicylidene)-1,2-cyclo-hexanediamine (H2salcn(2Bu)) (H2salcn(BuOMe)) Anal. Calc. for C36H54N2O2: C, 79.07%; H, 9.95%; N, 5.12%; C/N = 15.44. Found: C, 78.98%; H, 10.25%; N, 5.17%; C/N = 15.27. 1H-NMR (CDCl3): delta = 13.70 (bs, 2H), 8.29 (s, 2H), 7.29 (d, J = 2.40 Hz, 2H), 6.97 (d, J = 2.30 Hz, 2H), 3.31 (m, 2H), 1.94 (m, 2H), 1.87 (m, 2H), 1.73 (m, 2H), 1.47 (m, 2H), 1.40 (s, 18H), 1.23 (s, 18H). Yield: 2.19 g, 80%, mp = 178-181 C.

As the rapid development of chemical substances, we look forward to future research findings about 1121-22-8

Reference£º
Article; Tomczyk; Nowak; Bukowski; Bester; Urbaniak; Andrijewski; Olejniczak; Electrochimica Acta; vol. 121; (2014); p. 64 – 77;,
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Extracurricular laboratory: Synthetic route of 602-09-5

As the rapid development of chemical substances, we look forward to future research findings about 602-09-5

[1,1′-Binaphthalene]-2,2′-diol, cas is 602-09-5, it is a common heterocyclic compound, the chiral-catalyst compound, its synthesis route is as follows.,602-09-5

In a glass reactor equipped with a stirrer, cooler and thermometer,286 g (1 mol) of (RS) -1,1′-bi-2-naphthol;194 g (2.2 mol) of ethylene carbonate,Charge 15 g of potassium carbonate and 450 g of toluene,The reaction was performed at 110 C. for 10 hours. After diluting the reaction solution by adding 540 g of toluene,The organic solvent layer was washed by adding 290 g of a 10% by mass aqueous sodium hydroxide solution.Subsequently, the washing with water was repeated using 500 g of water until the washed water became neutral. After washing with water, trisodium phosphate dodecahydrate 1. 6 g was added and the mixture was stirred for 30 minutes. Thereafter, the mixture was cooled from 80 C. to 30 C. at a rate of 0.5 C./min, filtered under reduced pressure (50 kPa) and dried,(RS) -2,2′-bis (2-hydroxyethoxy)-1,1′-binaphthalene317 g (yield: 84.5% by mass, purity: 99.6%, D50: 58 mum) of white crystals of the compound were obtained. The phosphorus content in the obtained crystals was 47 mass ppm.

As the rapid development of chemical substances, we look forward to future research findings about 602-09-5

Reference£º
Patent; DKS Co Ltd; Saito, Daisuke; Umeda, Kazutoshi; (9 pag.)JP6615397; (2019); B1;,
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Simple exploration of 602-09-5

As the paragraph descriping shows that 602-09-5 is playing an increasingly important role.

602-09-5, [1,1′-Binaphthalene]-2,2′-diol is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

In a 3000 mL four-necked flask, 343.2 g (1.2 mol) of (¡À)-1,1′-bi(2-naphthol), 600 g of toluene, 48 g of N,N-dimethylacetamide, 22.8 g of potassium carbonate and 704 g (3 mol) of ethylene carbonate. After 6 hours of reaction at 100 C, The content of (¡À) -2,2′-bis- (2-hydroxyethoxy) -1,1′-binaphthalene was less than 0.1% by HPLC analysis, and the reaction was stopped. Toluene was added, washed with water to neutrality, and the solid was precipitated by cooling, and put into a 1000 mL oven with spiral stirring. Toluene was added, washed with water to neutrality, and the solid was precipitated by cooling, and put into a 1000 mL oven with spiral stirring. Grinding the dried under vacuum, drying temperature 85 , drying time of 18 hours, to give (¡À) -2,2′- two – (2-hydroxyethoxy) -1,1′-binaphthyl 391.73g, yield 87.19%., 602-09-5

As the paragraph descriping shows that 602-09-5 is playing an increasingly important role.

Reference£º
Patent; Jiangsu Yong Xing Chemical Co., Ltd.; Xu Weihua; Zhao Jinlong; Lu Guoyuan; Zhang Qiang; (15 pag.)CN110483259; (2019); A;,
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Brief introduction of 602-09-5

602-09-5 [1,1′-Binaphthalene]-2,2′-diol 762831, achiral-catalyst compound, is more and more widely used in various fields.

602-09-5, [1,1′-Binaphthalene]-2,2′-diol is a chiral-catalyst compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

20.0 g (69.93 mol) of the starting material SM-0 was dissolved in 300 ml of anhydrous dichloromethane, 27.5 g (0.35 mol) of pyridine and 1.5 g of DMAP were added, 43.4 g (0.15 mol) of a solution of trifluoromethanesulfonic anhydride dissolved in dichloromethane was slowly added dropwise, the reaction was stirred at room temperature for 8 hours, and stirred with 300 ml of water for 30 minutes, the organic phase was collected, concentrated, dried, and purified using silica gel column, concentrated and dried under reduced pressure to obtain 36.5 g of a white solid in a yield of 95% ., 602-09-5

602-09-5 [1,1′-Binaphthalene]-2,2′-diol 762831, achiral-catalyst compound, is more and more widely used in various fields.

Reference£º
Patent; Shijiazhuang Cheng Zhiyonghua Display Materials Co., Ltd.; Cao Jianhua; Wang Shibo; Dong Liang; Zhang Jianchuan; Sui Yan; Tang Yongshun; (39 pag.)CN108623430; (2018); A;,
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Application of (S)-(1-Ethylpyrrolidin-2-yl)methanamine

As the rapid development of chemical substances, we look forward to future research findings about 673-06-3

A common heterocyclic compound, the chiral-catalyst compound, name is D-Phenylalanine,cas is 673-06-3, mainly used in chemical industry, its synthesis route is as follows.,673-06-3

EXAMPLE 1 (R)-2-Bromo-3-phenylpropanoic Acid Sodium nitrite (27 g in water) is added at 0 C. to a solution of D-phenylalanine (40 g) in a mixture of 48% hydrobromic acid/water (1:1 by volume). The mixture is stirred for 30 minutes at 0 C. and then for 2 hours 30 minutes at a temperature close to 0 C. The reaction mixture is extracted with ether. The organic extracts are washed with water and a saturated sodium chloride solution and then dried over sodium sulphate. After filtration and concentration to dryness, the obtained residue is purified by distillation. (R)-2-Bromo-3-phenylpropanoic acid (33 g) is obtained which has the following characteristics: B.p.1kPa =154 C.; Rf =0.47 (methylene chloride/methanol). The yield is 60%.

As the rapid development of chemical substances, we look forward to future research findings about 673-06-3

Reference£º
Patent; Institut National de la Sante et de la Recherche Medicale (INSERM); US5591891; (1997); A;,
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Application of 7-Nitro-1,2,3,4-tetrahydroisoquinoline

As the rapid development of chemical substances, we look forward to future research findings about 4488-22-6

A common heterocyclic compound, the chiral-catalyst compound, name is [1,1′-Binaphthalene]-2,2′-diamine,cas is 4488-22-6, mainly used in chemical industry, its synthesis route is as follows.,4488-22-6

To a solution of 2 (1.421 g, 5 mmol) in benzene (5 mL) was added allylalcohol (0.850 mL, 12.5 mmol) and dried molsieve (1 g, 4 A) and the mixture was degassed. Subsequently, Ti(i-OPr)4, (710 mg, 740 muL, 2.5 mmol), PPh3 (105 mg, 0.4 mmol), and Pd(OAc)2 (22.5 mg, 0.1 mmol) was added and the reaction was stirred under Ar at 50 C. The conversion was monitored by TLC. After extractive work-up with DCM/water, drying (MgSO4), and evaporation, the crude product was purified by chromatography in EtOAc (5?20%)/heptane to afford 1.55 g (85%) of 6 as a slightly brown crystaline solid; m.p.: 95-99 C. 1H-NMR delta = 7.87 (d, J = 9.0 Hz, 2H); 7.78 (dm, J = 7.7 Hz, 2H); 7.21 (d, J = 9.1 Hz, 2H); 7.14-7.22 (m, 4H); 6.99 (dm, J = 7.9 Hz, 2H); 5.77 (ddm, J = 17.3, 10.3 Hz, 2H); 5.12 (dm, J = 17.3 Hz, 2H); 5.02 (dm, J = 10.3 Hz, 2H); 3.92 (br.s, 2H); 3.77-3.86 (br.m, 4H). 13C-NMR delta = 144.2 (C); 135.7 (CH); 133.9 (C); 129.5 (CH); 128.1 (CH); 127.7 (C); 126.7 (CH); 123.9 (CH); 122.0 (CH); 115.6 (CH2); 114.2 (CH); 112.0 (C); 46.1 (CH2). HRMS calcd for C26H25N2 [M + H]+: 365.2018; found: 365.2011.

As the rapid development of chemical substances, we look forward to future research findings about 4488-22-6

Reference£º
Article; Lemmerer, Miran; Abraham, Michael; Brutiu, Bogdan R.; Roller, Alexander; Widhalm, Michael; Molecules; vol. 24; 17; (2019);,
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Application of Benzo[d]isoxazol-3-amine

As the rapid development of chemical substances, we look forward to future research findings about 23190-16-1

A common heterocyclic compound, the chiral-catalyst compound, name is (1R,2S)-2-Amino-1,2-diphenylethanol,cas is 23190-16-1, mainly used in chemical industry, its synthesis route is as follows.,23190-16-1

To a 5 L round bottom flask equipped with an overhead stirrer, thermocouple and distillation head, was charged 550 g (2.579 mol) of (lR, 2S) -diphenyl-2-aminoethanol, 457 g (3.868 mol, 1. 5eq) of diethylcarbonate, 18 g (0.258 mol, O. leq) of NaOEt in 100 mL of EtOH and 3.5 L of toluene. The reaction was heated until an internal temperature of 90C was reached and EtOH distillation began. The reaction was refluxed until an internal temperature of 110 DC was reached (7 hours). For every 500 mL of solvent that was removed via the distillation head, 500 mL of toluene was added back to the reaction. A total of about 1.6 L of solvent was removed. The reaction was allowed to cool to room temperature and then filtered on a 3 L coarse fritted funnel with 2 psig N2. Nitrogen was blown over the cake overnight to give 580 g (94% yield) of the titled compound : 1H NMR (DMSO) 7.090-6. 985 (m, 6H), 6.930-6. 877 (m, 4H), 5.900 (d, 1H, J = 8.301), 5.206 (d, 1H, J = 8.301).

As the rapid development of chemical substances, we look forward to future research findings about 23190-16-1

Reference£º
Patent; PFIZER LIMITED; PFIZER INC.; WO2005/92318; (2005); A1;,
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