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二维钴有机网络的表面设计:保持大轨道磁矩

On-Surface Design of a 2D Cobalt-Organic Network Preserving Large Orbital Magnetic Moment.

作者信息

Martín-Fuentes Cristina, Parreiras Sofia O, Urgel José I, Rubio-Giménez Víctor, Muñiz Cano Beatriz, Moreno Daniel, Lauwaet Koen, Valvidares Manuel, Valbuena Miguel A, Gargiani Pierluigi, Kuch Wolfgang, Camarero Julio, Gallego José M, Miranda Rodolfo, Martínez José I, Martí-Gastaldo Carlos, Écija David

机构信息

Instituto Madrileño de Estudios Avanzados en Nanociencia (IMDEA Nanoscience), E-28049 Madrid, Spain.

Instituto de Ciencia Molecular (ICMol), Universitat de València, 46980 Paterna, Spain.

出版信息

J Am Chem Soc. 2022 Sep 7;144(35):16034-16041. doi: 10.1021/jacs.2c05894. Epub 2022 Aug 25.

Abstract

The design of antiferromagnetic nanomaterials preserving large orbital magnetic moments is important to protect their functionalities against magnetic perturbations. Here, we exploit an archetype HHOTP species for conductive metal-organic frameworks to design a Co-HOTP one-atom-thick metal-organic architecture on a Au(111) surface. Our multidisciplinary scanning probe microscopy, X-ray absorption spectroscopy, X-ray linear dichroism, and X-ray magnetic circular dichroism study, combined with density functional theory simulations, reveals the formation of a unique network design based on threefold Co coordination with deprotonated ligands, which displays a large orbital magnetic moment with an orbital to effective spin moment ratio of 0.8, an in-plane easy axis of magnetization, and large magnetic anisotropy. Our simulations suggest an antiferromagnetic ground state, which is compatible with the experimental findings. Such a Co-HOTP metal-organic network exemplifies how on-surface chemistry can enable the design of field-robust antiferromagnetic materials.

摘要

设计具有大轨道磁矩的反铁磁纳米材料对于保护其功能免受磁干扰至关重要。在此,我们利用一种用于导电金属有机框架的典型HHOTP物种,在Au(111)表面设计了一种Co-HOTP单原子厚的金属有机结构。我们结合密度泛函理论模拟进行的多学科扫描探针显微镜、X射线吸收光谱、X射线线性二色性和X射线磁圆二色性研究表明,基于三重Co与去质子化配体的配位形成了一种独特的网络设计,其显示出大的轨道磁矩,轨道与有效自旋矩之比为0.8,面内易磁化轴和大的磁各向异性。我们的模拟表明存在反铁磁基态,这与实验结果相符。这种Co-HOTP金属有机网络例证了表面化学如何能够实现对磁场稳健的反铁磁材料的设计。

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