Manchester Institute of Biotechnology, University of Manchester, 131 Princess St, Manchester, M1 7DN, UK.
Department of Chemistry, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Chemistry. 2022 Feb 16;28(9):e202104293. doi: 10.1002/chem.202104293. Epub 2022 Jan 12.
To investigate how remotely induced changes in ligand folding might affect catalysis by organometallic complexes, dynamic α-amino-iso-butyric acid (Aib) peptide foldamers bearing rhodium(I) N-heterocyclic carbene (NHC) complexes have been synthesized and studied. X-ray crystallography of a foldamer with an N-terminal azide and a C-terminal Rh(NHC)(Cl)(diene) complex showed a racemate with a chiral axis in the Rh(NHC) complex and a distorted 3 helical body. Replacing the azide with either one or two chiral L-α-methylvaline (L-αMeVal) residues gave diastereoisomeric foldamers that each possessed point, helical and axial chirality. NMR spectroscopy revealed an unequal ratio of diastereoisomers for some foldamers, indicating that the chiral conformational preference of the N-terminal residue(s) was relayed down the 1 nm helical body to the axially chiral Rh(NHC) complex. Although the remote chiral residue(s) did not affect the stereoselectivity of hydrosilylation reactions catalysed by these foldamers, these studies suggest a potential pathway towards remote conformational control of organometallic catalysts.
为了研究配体折叠的远程诱导变化如何影响金属有机配合物的催化作用,我们合成并研究了带有铑(I)N-杂环卡宾(NHC)配合物的动态α-氨基异丁酸(Aib)肽折叠体。具有末端叠氮化物和末端 Rh(NHC)(Cl)(二烯)配合物的折叠体的 X 射线晶体学显示出手性轴在 Rh(NHC)配合物中的外消旋体和扭曲的 3 螺旋体。将叠氮化物分别用一个或两个手性 L-α-甲基缬氨酸(L-αMeVal)残基取代,得到具有点、螺旋和轴向手性的非对映异构体折叠体。NMR 光谱揭示了一些折叠体的非对映异构体比例不均,表明 N-末端残基的手性构象偏好沿 1nm 螺旋体传递到轴向手性 Rh(NHC)配合物。尽管远程手性残基不影响这些折叠体催化的硅氢化反应的立体选择性,但这些研究表明了一种潜在的方法,可以远程控制金属有机催化剂的构象。