Nelson Eryn, Bertke Jeffery A, Thanzeel F Yushra, Wolf Christian
Chemistry Department, Georgetown University, 3700 O St NW, Washington, DC-20057.
Angew Chem Int Ed Engl. 2024 Jun 21;63(26):e202404594. doi: 10.1002/anie.202404594. Epub 2024 May 21.
Piano stool complexes have been studied over many years and found widespread applications in organic synthesis, catalysis, materials and drug development. We now report the first examples of quantitative chiroptical molecular recognition of chiral compounds through click-like η-arene coordination with readily available half sandwich complexes. This conceptually new approach to chirality sensing is based on irreversible acetonitrile displacement of [Cp*Ru(CHCN)]PF by an aromatic target molecule, a process that is fast and complete within a few minutes at room temperature. The metal coordination coincides with characteristic circular dichroism inductions that can be easily correlated to the absolute configuration and enantiomeric ratio of the bound molecule. A relay assay that decouples the determination of the enantiomeric composition and of the total sample amount by a practical CD/UV measurement protocol was developed and successfully tested. The introduction of piano stool complexes to the chiroptical sensing realm is mechanistically unique and extends the scope of currently known methods with small-molecule probes that require the presence of amino, alcohol, carboxylate or other privileged functional groups for binding of the target compound. A broad application range including pharmaceutically relevant multifunctional molecules and the use in chromatography-free asymmetric reaction analysis are also demonstrated.
多年来人们一直在研究钢琴凳配合物,并发现其在有机合成、催化、材料和药物开发等领域有着广泛应用。我们现在报道首例通过与易于获得的半夹心配合物进行类似点击反应的η -芳烃配位实现对手性化合物的定量手性光学分子识别。这种概念上全新的手性传感方法基于芳香族目标分子对[Cp*Ru(CHCN)]PF中乙腈的不可逆取代,该过程在室温下几分钟内即可快速且完全地完成。金属配位伴随着特征性的圆二色性诱导,这可以很容易地与结合分子的绝对构型和对映体比例相关联。我们开发并成功测试了一种通过实用的圆二色性/紫外测量方案将对映体组成和总样品量的测定解耦的中继分析方法。将钢琴凳配合物引入手性光学传感领域在机理上是独特的,并且扩展了目前已知的使用小分子探针的方法的范围,这些小分子探针需要氨基、醇、羧酸盐或其他特殊官能团的存在才能与目标化合物结合。还展示了其广泛的应用范围,包括与药物相关的多功能分子以及在无色谱不对称反应分析中的应用。