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具有竞争π-d铁磁/反铁磁序的大规模二维金属有机框架的表面合成

On-Surface Synthesis of a Large-Scale 2D MOF with Competing π-d Ferromagnetic/Antiferromagnetic Order.

作者信息

Frezza Federico, Kumar Manish, Sánchez-Grande Ana, Soler-Polo Diego, Carrera Manuel, Stetsovych Oleksandr, Mutombo Pingo, Curiel David, Jelínek Pavel

机构信息

Institute of Physics of Czech Academy of Sciences, Cukrovarnická 10, 16200 Prague 6, Czech Republic.

Faculty of Nuclear Sciences and Physical Engineering, Czech Technical University in Prague, Břehová 78/7, 11519 Prague 1, Czech Republic.

出版信息

J Am Chem Soc. 2025 Jun 11;147(23):19575-19582. doi: 10.1021/jacs.4c17993. Epub 2025 May 30.

Abstract

Metal-organic frameworks (MOFs) represent an interesting class of versatile materials with important properties, including magnetism. However, the synthesis of atomically precise large-scale 2D MOFs with nontrivial strong magnetic coupling represents a current research challenge. In this regard, we report on the synthesis of a high-quality large-scale 2D MOF, with strong π-d magnetic exchange coupling. To this aim, we present a new two-step synthetic approach that consists of the initial formation of an extended supramolecular organic framework on a Au(111) surface, establishing the large-scale order of organic ligands and their subsequent metalation by single cobalt atoms assisted by annealing. Moreover, we show that the usage of radical asymmetric organic ligands enables us to form a magnetic 2D MOF with strong π-d electron interactions. According to the multireference calculations, the 2D MOF shows complex spin interactions beyond the traditional superexchange mechanism, with the interplay between antiferromagnetic and ferromagnetic couplings. We anticipate that this synthetic strategy can be adapted to different approaches, such as liquid interfaces or insulating substrates, to synthesize high-quality 2D MOFs. Accompanied by the high control with atomic precision over the magnetic properties of the ligands and metals, this approach enables the formation of large-scale 2D MOFs with complex spin interactions, which will open new avenues in the field of 2D magnetic materials.

摘要

金属有机框架(MOFs)是一类有趣的多功能材料,具有包括磁性在内的重要特性。然而,合成具有非平凡强磁耦合的原子精确的大规模二维MOFs是当前的一个研究挑战。在这方面,我们报道了一种具有强π-d磁交换耦合的高质量大规模二维MOF的合成。为此,我们提出了一种新的两步合成方法,该方法包括在Au(111)表面初步形成一个扩展的超分子有机框架,建立有机配体的大规模有序排列,以及随后通过退火辅助的单个钴原子对其进行金属化。此外,我们表明使用自由基不对称有机配体能够使我们形成具有强π-d电子相互作用的磁性二维MOF。根据多参考计算,该二维MOF表现出超越传统超交换机制的复杂自旋相互作用,其中反铁磁和铁磁耦合相互作用。我们预计这种合成策略可以适用于不同的方法,如液体界面或绝缘衬底,以合成高质量的二维MOFs。伴随着对配体和金属磁性的原子精确高度控制,这种方法能够形成具有复杂自旋相互作用的大规模二维MOFs,这将为二维磁性材料领域开辟新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e24/12164333/f52215e48c4b/ja4c17993_0001.jpg

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