Department of Chemistry, School of Life Sciences, University of Sussex, Brighton BN1 9QJ, UK.
Dalton Trans. 2018 Sep 11;47(35):12011-12034. doi: 10.1039/c8dt02362j.
The aim of this perspective is to summarise the use of the reported 3d-4f Coordination Clusters (CCs) in catalytic reactions and to demonstrate the potential of this emerging field. The pioneering work of Shibasaki, Matsunaga and others, demonstrated the use of 3d-4f in situ systems to catalyse asymmetric organic transformations. Our recent studies show that well characterised 3d-4f CCs catalyse numerous organic transformations and useful mechanistic aspects of their catalysis can be obtained. Furthermore, we have shown that by manipulation of the metal ion coordination environment; the nature of the 3d and lanthanide ions and the organic periphery of the ligand can all improve the efficacy of a 3d-4f CC catalyst. All in situ formed and well characterized 3d-4f CCs involved in catalysis are discussed.
本文旨在总结报道的 3d-4f 配位簇(CCs)在催化反应中的应用,并展示这一新兴领域的潜力。Shibasaki、Matsunaga 等人的开创性工作证明了 3d-4f 原位体系在不对称有机转化中的应用。我们最近的研究表明,经过良好表征的 3d-4f CC 可以催化多种有机转化,并且可以获得其催化的有用的机理方面。此外,我们还表明,通过操纵金属离子配位环境;3d 和镧系元素离子的性质以及配体的有机外围都可以提高 3d-4f CC 催化剂的效率。所有涉及催化的原位形成和良好表征的 3d-4f CC 都将进行讨论。