Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu, 610064, P. R. China.
Angew Chem Int Ed Engl. 2019 Nov 18;58(47):16785-16789. doi: 10.1002/anie.201907457. Epub 2019 Oct 8.
Reported here is a straightforward process in which a cyclic (alkyl)(amino)carbene/Rh catalyst system facilitates the preferential addition of hydrogen to the substitution sites of difluoromethylated and trifluoromethylated arenes and heteroarenes, leading to dearomative reduction. This strategy enables the diastereoselective synthesis of cis-difluoromethylated and cis-trifluoromethylated cycloalkanes and saturated heterocycles, and even allows formation of all-cis multi-trifluoromethylated cyclic products with a defined equatorial orientation of the di- and trifluoromethyl groups. Deuterium-labeling studies indicate that hydrogen preferentially attacks the substitution sites of planar arenes, resulting in dearomatization, possibly with heterogeneous Rh as the reactive species, followed by either reversible or irreversible hydrogen addition to the nonsubstitution sites.
这里报道了一种直截了当的方法,其中环状(烷基)(氨基)卡宾/ Rh 催化剂体系促进了氢对二氟甲基化和三氟甲基化芳基和杂芳基取代位点的优先加成,从而导致去芳构化还原。该策略能够实现顺式二氟甲基化和顺式三氟甲基化环烷烃以及饱和杂环的非对映选择性合成,甚至允许形成具有确定的二氟和三氟甲基基团的赤道取向的全顺式多三氟甲基化环状产物。氘标记研究表明,氢优先攻击平面芳环的取代位点,导致去芳构化,可能涉及作为反应性物质的多相 Rh,然后是可逆或不可逆地向非取代位点加氢。