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在一个坚固的层状[Ru2]2TCNQ 电荷转移体系中,与溶剂化/去溶剂化有关的反铁磁体和铁磁体之间的可逆磁性。

Reversible magnetism between an antiferromagnet and a ferromagnet related to solvation/desolvation in a robust layered [Ru2]2TCNQ charge-transfer system.

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, 6-3 Aramaki-Aza-Aoba, Aoba-ku, Sendai, Miyagi 980-8578, Japan.

出版信息

J Am Chem Soc. 2010 Sep 1;132(34):11943-51. doi: 10.1021/ja102412g.

Abstract

The charge-transfer compound [{Ru(2)(O(2)CPh-o-Cl)(4)}(2)TCNQ(MeO)(2)] x CH(2)Cl(2) (1; o-ClPhCO(2)(-) = o-chlorobenzoate; TCNQ(MeO)(2) = 2,5-dimethoxy-7,7,8,8-tetracyanoquinodimethane) was synthesized from the reaction of the neutral precursors [Ru(2)(II,II)(O(2)CPh-o-Cl)(4)] (abbreviated as [Ru(2)(II,II)] or [Ru(2)(4+)]) and TCNQ(MeO)(2) in a CH(2)Cl(2)/nitrobenzene solution. The structure consists of two-dimensional layers consisting of an infinite array in which [Ru(2)(II,II)] units are involved in charge transfer to TCNQ(MeO)(2) to give a formal charge of [{Ru(2)(4.5+)}-TCNQ(MeO)(2)(-)-{Ru(2)(4.5+)}]. Interstitial CH(2)Cl(2) molecules are located in the void spaces between the layers. Strong intralayer magnetic coupling between the units [Ru(2)(II,II)] with S = 1 or [Ru(2)(II,III)] with S = 3/2 and TCNQ(MeO)(2)(-) with S = 1/2, as well as long-range ordering due to antiferromagnetic interlayer interactions, was observed. An antiferromagnetic ground state exists below T(N) = 75 K, which undergoes a metamagnetic transition under applied fields less than 2 T to a field-induced canted antiferromagnetic state with large coercivities up to H(c) = 1.6 T at 1.8 K. Compound 1 gradually loses the interstitial CH(2)Cl(2) molecule at room temperature to form a dried sample (1-dry) without loss of crystallinity and converts nearly reversibly back to 1 after being exposed to CH(2)Cl(2) vapor for 72 h (distinguished as 1'). Interestingly, during this process there is no significant change in lattice dimensions and bond distances or angles with a volume change of only 1.2 vol %. The only discernible difference is ordering/disordering of a pendant ligand orientation, but the magnetism is dramatically altered to a ferromagnetic state with T(c) approximately 56 K for 1-dry. The magnetic property changes are gradual and depend on the degree of interstitial CH(2)Cl(2) molecule loss with reversibility in the process of going between 1 and 1-dry. In addition, in the case of partially desolvated crystals that have mixed domains of ferromagnetically and antiferromagnetically ordered domains for desolvated and solvated segments, respectively, the complete change to ferromagnet can also be triggered by magnetic fields even if the desolvated segments are comparatively minor compared to the solvated segments in a crystal. Surprisingly, the information of the existence of ferromagnetically ordered domains is dynamically recorded in the entire crystal after applying significant magnetic fields as if the majority of the antiferromagnetically ordered domains for solvated segments were never present.

摘要

电荷转移化合物[{Ru(2)(O(2)CPh-o-Cl)(4)}(2)TCNQ(MeO)(2)] x CH(2)Cl(2)(1;o-ClPhCO(2)(-) = o-氯苯甲酸盐;TCNQ(MeO)(2) = 2,5-二甲氧基-7,7,8,8-四氰基醌二甲烷)是由中性前体[Ru(2)(II,II)(O(2)CPh-o-Cl)(4)](简称[Ru(2)(II,II)]或[Ru(2)(4+)])和 TCNQ(MeO)(2)在 CH(2)Cl(2)/硝基苯溶液中反应合成的。该结构由二维层组成,其中无限排列的[Ru(2)(II,II)]单元参与到 TCNQ(MeO)(2)的电荷转移中,给出了[Ru(2)(4.5+)-TCNQ(MeO)(2)(-)-{Ru(2)(4.5+)}]的形式电荷。层间的空隙中存在着间隙 CH(2)Cl(2)分子。观察到单元[Ru(2)(II,II)](S = 1)或[Ru(2)(II,III)](S = 3/2)与 TCNQ(MeO)(2)(-)(S = 1/2)之间强烈的层内磁耦合,以及由于反铁层间相互作用导致的长程有序。低于 T(N) = 75 K 时存在反铁磁基态,在低于 2 T 的外加磁场下经历顺磁-反铁磁转变,在 1.8 K 时具有高达 H(c) = 1.6 T 的大矫顽力的场诱导倾斜反铁磁态。化合物 1 在室温下逐渐失去间隙 CH(2)Cl(2)分子,形成干燥样品(1-dry),而不失去结晶度,并在暴露于 CH(2)Cl(2)蒸汽 72 小时后几乎可完全可逆地转化回 1(标记为 1')。有趣的是,在此过程中,晶格尺寸和键距或角度没有明显变化,体积变化仅为 1.2%。唯一可识别的区别是悬挂配体取向的有序/无序,但磁性能发生了显著变化,1-dry 的铁磁居里温度约为 56 K。磁性变化是逐渐的,并且取决于间隙 CH(2)Cl(2)分子的损失程度,在 1 和 1-dry 之间的过程中具有可逆性。此外,对于部分去溶剂化的晶体,其具有分别为去溶剂化和溶剂化部分的铁磁和反铁磁有序域的混合域,即使与晶体中的溶剂化部分相比,去溶剂化部分相对较小,磁场也可以触发完全转变为铁磁态。令人惊讶的是,在施加强磁场后,整个晶体中动态记录了铁磁有序域的存在信息,就好像从未存在过溶剂化部分的大部分反铁磁有序域一样。

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