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 366-99-4 as follows. SDS of cas: 366-99-4
Example 18; Synthesis of (4-Chloro-6-cyclohexylmethoxy-[1,3,5]triazin-2-yl)-(3-fluoro-4-methoxy-phenyl)-amine (114); To a sample of 113 (1.011 g, 3.8 mmol) dissolved in acetone (20 mL) was added a solution of 3-fluoro-p-anisidine (0.541 g, 3.8 mmol) in acetone (10 mL) followed by addition of NaOH (1.52 mL, 2.5 N, 3.8 mmol) and water (3 mL). The reaction mixture was allowed to stir at reflux for about 3 hours under nitrogen. The reaction mixture was extracted 3 times with dichloromethane; the combined organic layers were washed with brine solution and dried over potassium carbonate. The sample was concentrated on a rotary evaporator and the resulting oil was dried overnight under vacuum. Column chromatography (silica gel, 70:30 hexanes:ethyl acetate) yielded light yellow solid compound 114 (0.581 g, 42percent), mp 98° C.; TLC (silica gel, 30:70 ethyl acetate:hexanes), Rf 0.36; MS (ESI): m/z 369 (39.1), 368 (22.1), 367 (M+H, 100), 273 (3.2), 271 (10.7).; Example 19; 6-Cyclohexylmethoxy-N,N’-bis-(3-fluoro-4-methoxy-phenyl)-1,3,5-triazine-2,4-diamine; Compound 115 was obtained as a by-product (0.159 g) via column chromatography (silica gel, 70:30 hexanes:ethyl acetate), mp 181° C.; TLC (silica gel, 30:70 ethyl acetate:hexanes), Rf 0.17; MS (ESI): m/z 472 (M+H, 100), 261 (1.5).
According to the analysis of related databases, 366-99-4, the application of this compound in the production field has become more and more popular.
Reference:
Patent; Timmer, Richard T.; Alexander, Christopher W.; Pillarisetti, Sivaram; Saxena, Uday; Yeleswarapu, Koteswar Rao; Pal, Manojit; Reddy, Jangalgar Tirupathy; Krishna Reddy, Velagala Venkata Rama Murali; Sridevi, Bhatlapenumarthy Sesha; Kumar, Potlapally Rajender; Reddy, Gaddam Om; US2004/209881; (2004); A1;,
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