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 22385-77-9 as follows. Recommanded Product: 1-Bromo-3,5-di-tert-butylbenzene
General procedure: An oven-dried Schlenk tube with the presence of magnetic stir bar which is Teflon-coated was charged with Pd(dba)2 (11.5 mg, 0.02 mmol, 2 molpercent) and ligand L4 (8.4 mg, 0.02 mmol, 2 molpercent). The flask was evacuated and backfilled with nitrogen (3 cycles). Pre-complexation of palladium and ligand was initiated by injecting freshly distilled dry dichloromethane (2.0 mL) and Et3N (0.1 mL) into the tube. The solution was stirred and warmed with hair drier till the solvent condensed on the tube wall. The solvent was removed under vacuum. Aryl bromide (1.0 mmol), KOt-Bu (0.25 mmol), and potassium hexacyanoferrate(II) trihydrate (0.23 mmol) were charged successively to the tube followed by another 3 evacuation-nitrogen refill cycles. Water (1.0 mL) and acetonitrile (1.0 mL) were used as a solvent mixture. The tube was immersed into a preheated 50 °C oil bath for 24 hours. The reaction was quenched by cooling to ambient temperature and added with EtOAc and water. The organic supernatant was analyzed by GC. The organic layer was separated and the remained aqua medium was further extracted with EtOAc (10 mL .x. 3). The combined organic phases were concentrated under reduced pressure. The crude product was purified by flash column chromatography on silica gel (230-400 mesh). The pure fractions were collected, dried under vacuum, and followed by proton (1H) and carbon (13C) NMR characterization
According to the analysis of related databases, 22385-77-9, the application of this compound in the production field has become more and more popular.
Reference:
Article; Yeung, Pui Yee; Tsang, Chun Pui; Kwong, Fuk Yee; Tetrahedron Letters; vol. 52; 52; (2011); p. 7038 – 7041;,
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