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取代基对2,2'-联嘧啶自由基桥联二镧系配合物中交换耦合和磁弛豫的影响

Substituent Effects on Exchange Coupling and Magnetic Relaxation in 2,2'-Bipyrimidine Radical-Bridged Dilanthanide Complexes.

作者信息

Gould Colin A, Mu Edward, Vieru Veacheslav, Darago Lucy E, Chakarawet Khetpakorn, Gonzalez Miguel I, Demir Selvan, Long Jeffrey R

机构信息

Theory of Nanomaterials Group, Katholieke Universiteit Leuven, Celestijnenlaan 200F, 3001 Leuven, Belgium.

Department of Chemistry, Michigan State University, East Lansing, Michigan 48824, United States.

出版信息

J Am Chem Soc. 2020 Dec 16;142(50):21197-21209. doi: 10.1021/jacs.0c10612. Epub 2020 Dec 2.

Abstract

Systematic analysis of related compounds is crucial to the design of single-molecule magnets with improved properties, yet such studies on multinuclear lanthanide complexes with strong magnetic coupling remain rare. Herein, we present the synthesis and magnetic characterization of the series of radical-bridged dilanthanide complex salts (Cp*Ln)(μ-5,5'-Rbpym) (Ln = Gd, Dy; R = NMe (), OEt (), Me (), F (); bpym = 2,2'-bipyrimidine). Modification of the substituent on the bridging 5,5'-Rbpym radical anion allows the magnetic exchange coupling constant, , for the gadolinium compounds in this series to be tuned over a range from -2.7 cm () to -11.1 cm (), with electron-withdrawing or -donating substituents increasing or decreasing the strength of exchange coupling, respectively. Modulation of the exchange coupling interaction has a significant impact on the magnetic relaxation dynamics of the single-molecule magnets through , where stronger for the corresponding Gd compounds is associated with larger thermal barriers to magnetic relaxation (), open magnetic hysteresis at higher temperatures, and slower magnetic relaxation rates for through-barrier processes. Further, we derive an empirical linear correlation between the experimental values for through and the magnitude of for the corresponding gadolinium derivatives that provides insight into the electronic structure of these complexes. This simple model applies to other organic radical-bridged dysprosium complexes in the literature, and it establishes clear design criteria for increasing magnetic operating temperatures in radical-bridged molecules.

摘要

对相关化合物进行系统分析对于设计性能更优的单分子磁体至关重要,然而,对具有强磁耦合的多核镧系配合物的此类研究仍然很少。在此,我们展示了一系列自由基桥联双镧系配合物盐(Cp*Ln)(μ-5,5'-Rbpym)(Ln = Gd,Dy;R = NMe (),OEt (),Me (),F ();bpym = 2,2'-联嘧啶)的合成及磁性表征。桥连的5,5'-Rbpym自由基阴离子上取代基的修饰使得该系列钆化合物的磁交换耦合常数J在-2.7 cm ()至-11.1 cm ()范围内可调,吸电子或供电子取代基分别增强或减弱交换耦合强度。交换耦合相互作用的调制对单分子磁体的磁弛豫动力学有显著影响,其中相应钆化合物更强的J与更大的磁弛豫热垒()、更高温度下的开放磁滞以及贯穿势垒过程中更慢的磁弛豫速率相关。此外,我们推导了通过实验得到的J值与相应钆衍生物的J大小之间的经验线性相关性,这为深入了解这些配合物的电子结构提供了线索。这个简单模型适用于文献中的其他有机自由基桥联镝配合物,并为提高自由基桥联分子的磁工作温度建立了明确的设计标准。

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