Li Xiao-Zhen, Tian Chong-Bin, Sun Qing-Fu
State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, People's Republic of China.
Chem Rev. 2022 Mar 23;122(6):6374-6458. doi: 10.1021/acs.chemrev.1c00602. Epub 2022 Feb 8.
Lanthanide supramolecular chemistry is a fast growing and intriguing research field due to the unique photophysical, magnetic, and coordination properties of lanthanide ions (Ln). Compared with the intensively investigated mononuclear Ln-complexes, polymetallic lanthanide supramolecular assemblies offer more structural superiority and functional advantages. In recent decades, significant progress has been made in polynuclear lanthanide supramolecules, varying from structural evolution to luminescent and magnetic functional materials. This review summarizes the design principles in ligand-induced coordination-driven self-assembly of polynuclear Ln-structures and intends to offer guidance for the construction of more elegant Ln-based architectures and optimization of their functional performances. Design principles concerning the water solubility and chirality of the lanthanide-organic assemblies that are vital in extending their applications are emphasized. The strategies for improving the luminescent properties and the applications in up-conversion, host-guest chemistry, luminescent sensing, and catalysis have been summarized. Magnetic materials based on supramolecular assembled lanthanide architectures are given in an individual section and are classified based on their structural features. Challenges remaining and perspective directions in this field are also briefly discussed.
由于镧系离子(Ln)具有独特的光物理、磁和配位性质,镧系超分子化学是一个快速发展且引人入胜的研究领域。与深入研究的单核Ln配合物相比,多金属镧系超分子组装体具有更多的结构优势和功能优势。近几十年来,多核镧系超分子取得了显著进展,从结构演化到发光和磁性功能材料均有涉及。本综述总结了配体诱导的多核Ln结构配位驱动自组装的设计原则,旨在为构建更精巧的Ln基结构及其功能性能优化提供指导。强调了镧系有机组装体的水溶性和手性等对扩展其应用至关重要的设计原则。总结了改善发光性能的策略以及在上转换、主客体化学、发光传感和催化方面的应用。基于超分子组装镧系结构的磁性材料在单独一节中给出,并根据其结构特征进行分类。还简要讨论了该领域仍然存在的挑战和未来的发展方向。