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通过可切换电子构型控制配位簇的动态磁性能

Controlling dynamic magnetic properties of coordination clusters via switchable electronic configuration.

作者信息

Huang Wei, Ma Xiao, Sato Osamu, Wu Dayu

机构信息

Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, Advanced Catalysis & Green Manufacturing Collaborative Innovation Center, School of Petrochemical Engineering, Changzhou University, Changzhou 213164, China.

出版信息

Chem Soc Rev. 2021 Jun 21;50(12):6832-6870. doi: 10.1039/d1cs00101a. Epub 2021 Apr 13.

Abstract

Large-sized coordination clusters have emerged as a new class of molecular materials in which many metal atoms and organic ligands are integrated to synergize their properties. As dynamic magnetic materials, such a combination of multiple components functioning as responsive units has many advantages over monometallic systems due to the synergy between constituent components. Understanding the nature of dynamic magnetism at an atomic level is crucial for realizing the desired properties, designing responsive molecular nanomagnets, and ultimately unlocking the full potential of these nanomagnets for practical applications. Therefore, this review article highlights the recent development of large-sized coordination clusters with dynamic magnetic properties. These dynamic properties can be associated with spin transition, electron transfer, and valence fluctuation through their switchable electronic configurations. Subsequently, the article also highlights specialized characterization techniques with different timescales for supporting switching mechanisms, chemistry, and properties. Afterward, we present an overview of coordination clusters (such as cyanide-bridged and non-cyanide assemblies) with dynamic magnetic properties, namely, spin transition and electron transfer in magnetically bistable systems and mixed-valence complexes. In particular, the response mechanisms of coordination clusters are highlighted using representative examples with similar transition principles to gain insights into spin state and mixed-valence chemistry. In conclusion, we present possible solutions to challenges related to dynamic magnetic clusters and potential opportunities for a wide range of intelligent next-generation devices.

摘要

大型配位簇已成为一类新型分子材料,其中许多金属原子和有机配体整合在一起,以协同发挥其性能。作为动态磁性材料,这种由多个作为响应单元的组分组成的组合,由于其组成成分之间的协同作用,比单金属体系具有许多优势。在原子水平上理解动态磁性的本质对于实现所需性能、设计响应性分子纳米磁体以及最终释放这些纳米磁体在实际应用中的全部潜力至关重要。因此,这篇综述文章重点介绍了具有动态磁性的大型配位簇的最新进展。这些动态特性可通过其可切换的电子构型与自旋转变、电子转移和价态波动相关联。随后,文章还重点介绍了用于支持切换机制、化学性质和特性的不同时间尺度的专业表征技术。之后,我们概述了具有动态磁性的配位簇(如氰基桥联和非氰基组装体),即磁双稳态体系和混合价配合物中的自旋转变和电子转移。特别是,通过具有相似转变原理的代表性例子突出了配位簇的响应机制,以深入了解自旋态和混合价化学。总之,我们提出了与动态磁性簇相关挑战的可能解决方案以及广泛的智能下一代设备的潜在机会。

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