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线性铜配合物阵列作为多功能分子链:合成、结构、发光和磁性。

Linear Copper Complex Arrays as Versatile Molecular Strings: Syntheses, Structures, Luminescence, and Magnetism.

机构信息

Department of Chemistry and Biochemistry, Kennesaw State University, 370 Paulding Avenue NW, MD#1203, Kennesaw, GA, 30144, USA.

出版信息

Chemistry. 2019 Mar 21;25(17):4274-4298. doi: 10.1002/chem.201803914. Epub 2019 Jan 9.

DOI:10.1002/chem.201803914
PMID:30357943
Abstract

The defined linear arrangement of metal atoms in discrete coordination complexes or polymers is still one of the most intriguing challenges in synthetic chemistry. These chain arrangements are of fundamental importance, because of their potential applications as molecular wires and single molecule magnets (SMM) in microelectronic devices on a molecular scale. Oligonuclear Group 11 metal complexes with suitable bridging ligands, specifically those that are based on copper as the first choice of a cheap precursor coinage metal, are of particular interest in this regard. This is due to the superior luminescence properties of these linear clusters that often show d ⋅⋅⋅d interactions in their molecular structures. The combination of Cu with heavier coinage metal ions results in tunable emissive arrays that are also stimuli-responsive. Thus, both linear multinuclear Cu and linear heteropolymetallic Cu /Ag as well as Cu /Au clusters are excellent candidates for applications in molecular/organic light-emitting devices (OLEDs). Alternatively, paramagnetic multinuclear cupric arrays are prominent as potential molecular wires with enhanced magnetic properties through multiple coupled d centers. This Review covers the whole range of linear multinuclear assemblies of cuprous and cupric ions in complexes and coordination polymers, their syntheses, photophysical behavior, and magnetic properties. Moreover, recent advances in the rapidly progressing field of hetero-Cu /Ag and Cu /Au molecular strings are also discussed.

摘要

在离散的配位化合物或聚合物中,金属原子的线性排列仍然是合成化学中最具吸引力的挑战之一。这些链状排列具有重要的基础意义,因为它们有可能在分子尺度的微电子设备中用作分子导线和单分子磁体(SMM)。具有合适桥联配体的多核 Group 11 金属配合物,特别是那些基于铜的配合物,因其作为廉价前体货币金属的首选,在这方面特别有趣。这是由于这些线性簇的发光性能优越,它们的分子结构中通常表现出 d ⋅⋅⋅d 相互作用。Cu 与较重的货币金属离子的组合导致可调谐的发射阵列,这些阵列也是对刺激有响应的。因此,线性多核 Cu 和线性杂多金属 Cu /Ag 以及 Cu /Au 簇都是在分子/有机发光器件(OLEDs)中应用的优秀候选者。或者,通过多个耦合的 d 中心,多自旋核铜离子的阵列作为潜在的分子导线具有增强的磁性。这篇综述涵盖了铜离子和铜离子在配合物和配位聚合物中的线性多核组装体的各个方面,包括它们的合成、光物理行为和磁学性质。此外,还讨论了异质 Cu /Ag 和 Cu /Au 分子键这一快速发展领域的最新进展。

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