School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, UK.
Org Biomol Chem. 2020 Apr 29;18(16):3012-3016. doi: 10.1039/d0ob00155d.
The practical synthesis of carbohydrate-based NHC-Rh complexes bearing C1 or C3 sterically differentiated positions, accessed by glycosylation or SNAr strategies, is reported. These catalysts exhibit pseudo-enantiomeric behaviour in the hydrosilylation of acetophenone. We show that steric bulk at C1 gives preference for (S)-phenyl-1-ethanol, while bulk at C3 leads to the (R)-enantiomer. These results represent the first example of pseudo-enantiomeric carbohydrate-based NHC ligands leading to enantiotopic discrimination.
本文报道了通过糖基化或 SNAr 策略,在具有 C1 或 C3 位空间位阻差异的糖基负载的 NHC-Rh 配合物的实际合成。这些催化剂在苯乙酮的硅氢化反应中表现出假对映选择性。我们证明 C1 位的位阻有利于(S)-苯基-1-乙醇,而 C3 位的位阻则导致(R)-对映体。这些结果代表了首例具有对映体选择性的糖基负载 NHC 配体导致对映体选择性的实例。