Amino Acid Derived Chiral Aminobenzimidazole Manganese Catalysts for Asymmetric Transfer Hydrogenation of Ketones was written by Wang, Lixian;Lin, Jin;Sun, Qiangsheng;Xia, Chungu;Sun, Wei. And the article was included in ACS Catalysis in 2021.Quality Control of (S)-1-(2-Fluorophenyl)ethanol This article mentions the following:
A series of Mn(I) catalysts with chiral bidentate benzimidazoles derived from easily available amino acids has been developed. These types of phosphine-free chiral Mn catalysts demonstrate high activity and enantioselectivity in asym. transfer hydrogenation (ATH) for a broad range of ketone substrates. A bulkier substrate, such as 2,6-dichloro-3-fluoroacetophenone, can be converted into the drug intermediate alc. with up to 90% yield and 92% ee (e.g., crizotinib). On the basis of exptl. and DFT studies, a possible mechanism for this Mn-catalyzed ATH is also proposed. DFT calculations further render a plausible model for enantiocontrol in ketone hydrogenation, in which the π-π stacking interaction between the catalyst and the substrate plays an important role. In the experiment, the researchers used many compounds, for example, (S)-1-(2-Fluorophenyl)ethanol (cas: 171032-87-4Quality Control of (S)-1-(2-Fluorophenyl)ethanol).
(S)-1-(2-Fluorophenyl)ethanol (cas: 171032-87-4) belongs to alcohols. Under appropriate conditions, inorganic acids also react with alcohols to form esters. To form these esters, a wide variety of specialized reagents and conditions can be used. Tertiary alcohols cannot be oxidized at all without breaking carbon-carbon bonds, whereas primary alcohols can be oxidized to aldehydes or further oxidized to carboxylic acids.Quality Control of (S)-1-(2-Fluorophenyl)ethanol
Referemce:
Alcohol – Wikipedia,
Alcohols – Chemistry LibreTexts