One prominent application of synthetic organobromine compounds is the use of polybrominated diphenyl ethers as fire-retardants, and in fact fire-retardant manufacture is currently the major industrial use of the element bromine. 20469-65-2, formula is C8H9BrO2, Name is 1-Bromo-3,5-dimethoxybenzene, HPLC of Formula: 20469-65-2
Delcaillau, Tristan;Boehm, Philip;Morandi, Bill research published 《 Nickel-Catalyzed Reversible Functional Group Metathesis Between Aryl Nitriles And Aryl Thioethers》, the research content is summarized as follows. A new functional group metathesis between aryl nitriles and aryl thioethers via nickel/dcype catalysis to achieve fully reversible transformation to afford aryl nitriles R-CN [R = 4-tBuC6H4, 3-FC6H4, 2-naphthyl, etc.] and aryl thioethers R1-SMe [R1 = 4-NCC6H4, 2-pyridyl, 4-F3CC6H4, etc.] in good to excellent yields was reported. Furthermore, the cyanide and thiol-free reaction showed high functional-group tolerance and great efficiency for late-stage derivatization of com. mols. Finally, synthetic applications demonstrated its versatility and utility in multistep synthesis.
HPLC of Formula: 20469-65-2, 1-Bromo-3,5-dimethoxybenzene, also known as 1-Bromo-3,5-dimethoxybenzene, is a useful research compound. Its molecular formula is C8H9BrO2 and its molecular weight is 217.06 g/mol. The purity is usually 95%.
1-Bromo-3,5-dimethoxybenzene is used as an intermediate in the synthetic preparation of pharmaceutical inhibitors via cross-coupling reactions.
1-Bromo-3,5-dimethoxybenzene can be synthesized by using 1,3-dimethoxybenzene via iridium-catalyzed arene borylation.
1-Bromo-3,5-dimethoxybenzene (1BDMB) is a synthetic molecule that can be used as an electron acceptor in organic photovoltaic cells. 1BDMB is a salt of the sodium salt of resorcylic acid and 1,3-dibromo-5,5-dimethoxybenzene. It has been shown to have a radical mechanism for the generation of free radicals. The radical mechanism is initiated by light absorption by the ruthenium complex at the center of the molecule which induces photoinduced electron transfer from the ruthenium to 1BDMB. This process results in electron transfer from the donor to an acceptor molecule, such as oxygen or nitrogen. The pharmacokinetic properties of this compound are not well known; however, it has been demonstrated that it can be synthesized through a cross-coupling reaction with other aromatic compounds such as stemofuran., 20469-65-2.
Referemce:
Bromide – Wikipedia,
bromide – Wiktionary