Westfälische Wilhelms-Universität Münster, Organisch-Chemisches Institut, Corrensstraße 40, 48149, Münster, Germany.
Westfälische Wilhelms-Universität Münster, Westfälische, Center for Soft Nanoscience (SoN) and Organisch-Chemisches Institut, Busso-Peus-Str.10, 48149, Münster, Germany.
Angew Chem Int Ed Engl. 2022 Aug 8;61(32):e202206687. doi: 10.1002/anie.202206687. Epub 2022 Jul 4.
A new class of saturated boron-incorporated cyclic molecules has been synthesized employing an arene-hydrogenation methodology. cis-Selective hydrogenation of easily accessible, and biologically important molecules comprising benzoxaborole, benzoxaborinin, and benzoxaboripin derivatives is reported. Among the various catalysts tested, rhodium cyclic(alkyl)(amino)carbene [Rh-CAAC] (1) pre-catalyst revealed the best hydrogenation activity confirming turnover number up to 1400 with good to high diastereoselectivity. A broad range of functional groups was tolerated including sensitive substituents such as -F, -CF , and -silyl groups. The utility of the synthesized products was demonstrated by the recognition of diols and sugars under physiological conditions. These motifs can have a substantial importance in medicinal chemistry as they possess a three-dimensional structure, are highly stable, soluble in water, form hydrogen bonds, and interact with diols and sugars.
采用芳烃氢化方法合成了一类新型的饱和硼取代环状分子。报道了容易获得的、具有生物重要性的分子的顺式选择性氢化,包括苯并硼唑、苯并硼嗪和苯并硼哌啶衍生物。在测试的各种催化剂中,铑环状(烷基)(氨基)卡宾[Rh-CAAC](1)前催化剂显示出最佳的氢化活性,确认转化率高达 1400,具有良好到高的非对映选择性。广泛的官能团都能耐受,包括敏感的取代基,如-F、-CF 3 和-silyl 基团。所合成产物的用途通过在生理条件下识别二醇和糖来证明。这些结构在药物化学中具有重要意义,因为它们具有三维结构、高度稳定、可溶于水、形成氢键,并与二醇和糖相互作用。