Discrete terpyridine-lanthanide molecular and supramolecular complexes

Xiujun Yu , Yaqi Hu , Chenxing Guo , Zhi Chen , Heng Wang , Xiaopeng Li
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引用次数: 1

Abstract

Integrating the advantages of terpyridine (tpy) ligands with excellent chromophoric sensitization ability and lanthanides (Lns) with characteristic luminescent and magnetic properties, discrete terpyridine-lanthanide (tpy-Ln) molecular and supramolecular complexes are of great value in many fields and have drawn significant attention from the community of supramolecular chemistry, coordination chemistry and materials science. Compared to the well-documented coordination behavior between transition metals and tpy, the construction of tpy-Ln molecular and supramolecular complexes remains a longstanding challenge due to the high coordination diversity and the lack of stereochemical preference of Lns. Nevertheless, with the advancement of self-assembly strategies, i.e., employing diverse anions as capping components and utilizing secondary auxiliary ligands as well as engineering of tpy ligands, diverse tpy-Ln molecular and supramolecular complexes have been constructed and their potential applications have been explored. This review comprehensively summarizes the progress of discrete tpy-Ln molecular and supramolecular complexes in the past decades, covering the structures of mononuclear, binuclear and multinuclear architectures. Beyond structures, the potential applications of these tpy-Ln complexes are also introduced. This review aims to shed more light on the design and construction of novel discrete tpy-Ln supramolecular complexes and materials with molecular level precision and multiple functions through coordination-driven self-assembly.

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离散的三吡啶-镧系分子和超分子复合物
离散型三吡啶-镧系(tpy- ln)分子和超分子配合物结合了具有优异显色敏化能力的三吡啶(tpy)配体和具有独特发光和磁性能的镧系元素(Lns)的优点,在许多领域具有重要的应用价值,已引起超分子化学、配位化学和材料科学界的广泛关注。与已有文献记载的过渡金属与tpy之间的配位行为相比,由于Lns具有高度的配位多样性和缺乏立体化学偏好,tpy- ln分子和超分子复合物的构建仍然是一个长期的挑战。然而,随着采用多种阴离子作为盖层组分、利用次级辅助配体以及tpy配体工程化等自组装策略的推进,构建了多种tpy- ln分子和超分子配合物,并探索了其潜在的应用前景。本文综述了近几十年来离散型tpy-Ln分子和超分子配合物的研究进展,涵盖了单核、双核和多核结构。除了结构外,还介绍了这些tpy-Ln配合物的潜在应用。本文旨在通过协调驱动的自组装技术,设计和构建具有分子水平精度和多种功能的新型离散tpy-Ln超分子复合物和材料。
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CiteScore
6.70
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