Revathi Shanmugam, Raja Preethi, Saha Sayantani, Eisen Moris S, Ghatak Tapas
Department of Chemistry, School of Advanced Sciences, Vellore Institute of Technology, Vellore-632014, Tamil Nadu, India.
Chem Commun (Camb). 2021 Jun 7;57(45):5483-5502. doi: 10.1039/d1cc00933h. Epub 2021 May 19.
In the last decade, major conceptual advances in the chemistry of actinide molecules and materials have been made to demonstrate their distinct reactivity profiles as compared to lanthanide and transition metal compounds, but some difficult questions remain concerning the intriguing stability of low-valent actinide complexes, and the importance of the 5f-orbitals in reactivity and bonding. The imidazolin-2-iminato moiety has been extensively used in ligands for the advancement of actinide chemistry owing to its unique capability of stabilizing the reactive and highly electrophilic metal ions by virtue of its strong electron donation and steric tunability. The current review article describes recent developments in the chemistry of light actinide metal ions (thorium and uranium) bearing these N-heterocyclic iminato moieties as supporting ligands. In addition, the effect of ring expansion of the N-heterocycle on the catalytic aptitude of the organoactinides is also described herein. The synthesis and reactivity of actinide complexes bearing N-heterocyclic iminato ligands are presented, and promising apposite applications are also presented. The current review focuses on addressing the catalytic behavior of actinide complexes with oxygen-containing substrates such as in the Tishchenko reaction, hydroelementation processes, and polymerization reactions. Actinide complexes have also found new catalytic applications, as demonstrated by the potent chemoselective carbonyl hydroboration and tandem proton-transfer esterification (TPTE) reaction, featuring coupling between an aldehyde and alcohol.
在过去十年中,锕系元素分子与材料化学取得了重大概念进展,以证明其与镧系和过渡金属化合物相比具有独特的反应活性,但关于低价锕系配合物引人入胜的稳定性以及5f轨道在反应性和键合中的重要性,仍存在一些难题。咪唑啉-2-亚氨基部分因其通过强电子给予和空间可调节性稳定活性且高度亲电金属离子的独特能力,已被广泛用于推进锕系元素化学的配体中。本综述文章描述了以这些N-杂环亚氨基部分作为支持配体的轻锕系金属离子(钍和铀)化学的最新进展。此外,本文还描述了N-杂环的扩环对有机锕系元素催化能力的影响。介绍了含N-杂环亚氨基配体的锕系配合物的合成与反应性,并展示了有前景的合适应用。本综述重点关注解决锕系配合物与含氧化合物底物的催化行为问题,例如在蒂申科反应、加氢元素化过程和聚合反应中。锕系配合物也已发现新的催化应用,如高效化学选择性羰基硼氢化和串联质子转移酯化(TPTE)反应所示,其特点是醛与醇之间的偶联反应。