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回到有机镧系元素化学的未来。

Back to the future of organolanthanide chemistry.

作者信息

Mahieu Nolwenn, Piątkowski Jakub, Simler Thomas, Nocton Grégory

机构信息

LCM, CNRS, Ecole Polytechnique, Institut Polytechnique de Paris, Route de Saclay 91120 Palaiseau France

出版信息

Chem Sci. 2022 Nov 30;14(3):443-457. doi: 10.1039/d2sc05976b. eCollection 2023 Jan 18.

Abstract

At the dawn of the development of structural organometallic chemistry, soon after the discovery of ferrocene, the description of the LnCp complexes, featuring large and mostly trivalent lanthanide ions, was rather original and sparked curiosity. Yet, the interest in these new architectures rapidly dwindled due to the electrostatic nature of the bonding between π-aromatic ligands and 4f-elements. Almost 70 years later, it is interesting to focus on how the discipline has evolved in various directions with the reports of multiple catalytic reactivities, remarkable potential in small molecule activation, and the development of rich redox chemistry. Aside from chemical reactivity, a better understanding of their singular electronic nature - not precisely as simplistic as anticipated - has been crucial for developing tailored compounds with adapted magnetic anisotropy or high fluorescence properties that have witnessed significant popularity in recent years. Future developments shall greatly benefit from the detailed reactivity, structural and physical chemistry studies, particularly in photochemistry, electro- or photoelectrocatalysis of inert small molecules, and manipulating the spins' coherence in quantum technology.

摘要

在结构有机金属化学发展之初,二茂铁发现后不久,对以大多为三价的大尺寸镧系离子为特征的LnCp配合物的描述颇为新颖,引发了人们的好奇心。然而,由于π-芳香配体与4f元素之间键合的静电性质,人们对这些新结构的兴趣迅速减退。近70年后,关注该学科如何朝着多个方向发展是很有意思的,这包括多种催化反应性的报道、小分子活化方面的显著潜力以及丰富的氧化还原化学的发展。除了化学反应性,更好地理解它们独特的电子性质——并不像预期的那么简单——对于开发具有适配磁各向异性或高荧光性质的定制化合物至关重要,近年来这些化合物颇受关注。未来的发展将极大地受益于详细的反应性、结构和物理化学研究,特别是在光化学、惰性小分子的电催化或光电催化以及量子技术中操纵自旋相干方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5385/9848160/cd89c6a8bda5/d2sc05976b-f1.jpg

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