Fujian Provincial Key Laboratory of Chemical Biology, Department of Chemical Biology, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, Fujian 361005, People's Republic of China.
J Am Chem Soc. 2013 Jul 24;135(29):10598-601. doi: 10.1021/ja403777k. Epub 2013 May 21.
The development of a chiral-at-metal iridium(III) complex for the highly efficient catalytic asymmetric transfer hydrogenation of β,β'-disubstituted nitroalkenes is reported. Catalysis by this inert, rigid metal complex does not involve any direct metal coordination but operates exclusively through weak interactions with functional groups properly arranged in the ligand sphere of the iridium complex. Although the iridium complex relies only on the formation of three hydrogen bonds, it exceeds the performance of most organocatalysts with respect to enantiomeric excess (up to 99% ee) and catalyst loading (down to 0.1 mol %). This work hints at an advantage of structurally complicated rigid scaffolds for non-covalent catalysis, which especially relies on conformationally constrained cooperative interactions between the catalyst and substrates.
报道了一种手性金属铱(III)配合物的发展,用于高效催化不对称转移氢化β,β'-二取代硝基烯烃。这种惰性、刚性金属配合物的催化作用不涉及任何直接的金属配位,而是完全通过与在铱配合物配体球中适当排列的官能团的弱相互作用来进行。尽管铱配合物仅依赖于形成三个氢键,但它在对映体过量(高达 99%ee)和催化剂负载量(低至 0.1mol%)方面超过了大多数有机催化剂的性能。这项工作暗示了对于非共价催化来说,结构复杂的刚性支架具有优势,这尤其依赖于催化剂和底物之间构象受限的协同相互作用。