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[Mn12O12(O2CCH2But)16(MeOH)4]·MeOH 的合成、结构、光谱和磁性表征,一种具有真正轴向对称的 Mn12 单分子磁体。

Synthesis, structure, and spectroscopic and magnetic characterization of [Mn12O12(O2CCH2But)16(MeOH)4]·MeOH, a Mn12 single-molecule magnet with true axial symmetry.

机构信息

Department of Chemistry, University of Florida, Gainesville, Florida 32611, United States.

出版信息

Inorg Chem. 2013 Jan 7;52(1):258-72. doi: 10.1021/ic301764t. Epub 2012 Dec 10.

DOI:10.1021/ic301764t
PMID:23214942
Abstract

The synthesis and properties are reported of a rare example of a Mn(12) single-molecule magnet (SMM) in truly axial symmetry (tetragonal, I4). [Mn(12)O(12)(O(2)CCH(2)Bu(t))(16)(MeOH)(4)]·MeOH (3·MeOH) was synthesized by carboxylate substitution on [Mn(12)O(12)(O(2)CMe)(16)(H(2)O)(4)]·2MeCO(2)H·4H(2)O (1). The complex was found to possess an S = 10 ground state, as is typical for the Mn(12) family, and displayed both frequency-dependent out-of-phase AC susceptibility signals and hysteresis loops in single-crystal magnetization vs DC field sweeps. The loops also exhibited quantum tunneling of magnetization steps at periodic field values. Single-crystal, high-frequency electron paramagnetic resonance spectra on 3·MeOH using frequencies up to 360 GHz revealed perceptibly sharper signals than for 1. Moreover, careful studies as a function of the magnetic field orientation did not reveal any satellite peaks, as observed for 1, suggesting that the crystals of 3 are homogeneous and do not contain multiple Mn(12) environments. In the single-crystal (55)Mn NMR spectrum in zero applied field, three well-resolved peaks were observed, which yielded hyperfine and quadrupole splitting at three distinct sites. However, observation of a slight asymmetry in the Mn(4+) peak was detectable, suggesting a possible decrease in the local symmetry of the Mn(4+) site. Spin-lattice (T(1)) relaxation studies were performed on single crystals of 3·MeOH down to 400 mK in an effort to approach the quantum tunneling regime, and fitting of the data using multiple functions was employed. The present work and other recent studies continue to emphasize that the new generation of truly high-symmetry Mn(12) complexes are better models for thorough investigation of the physical properties of SMMs than their predecessors such as 1.

摘要

报道了一种罕见的具有真正轴向对称(四方,I4)的 Mn(12) 单分子磁体(SMM)的合成和性质。[Mn(12)O(12)(O(2)CCH(2)Bu(t))(16)(MeOH)(4)]·MeOH(3·MeOH)是通过[Mn(12)O(12)(O(2)CMe)(16)(H(2)O)(4)]·2MeCO(2)H·4H(2)O(1)的羧酸取代合成的。该配合物被发现具有典型的 Mn(12) 家族的 S = 10 基态,并在单晶磁化率与直流磁场扫场的单晶体中显示出频率相关的反相交流磁化率信号和磁滞回线。这些回线也显示出在周期性磁场值下的磁量子隧道化。使用高达 360 GHz 的频率对 3·MeOH 进行单晶高频电子顺磁共振谱研究表明,信号明显比 1 更尖锐。此外,仔细研究磁场方向的函数并没有发现任何卫星峰,就像 1 中观察到的那样,这表明 3 的晶体是均匀的,并且不包含多个 Mn(12) 环境。在零外加磁场的单晶(55)Mn NMR 谱中,观察到三个分辨率良好的峰,这在三个不同的位置产生了超精细和四极分裂。然而,在 Mn(4+) 峰中可以检测到轻微的不对称性,这表明 Mn(4+) 位置的局部对称性可能降低。在努力接近量子隧道化区域的情况下,对 3·MeOH 的单晶进行了自旋晶格(T(1))弛豫研究,直至 400 mK,并使用多个函数对数据进行拟合。目前的工作和其他最近的研究继续强调,新一代真正高对称的 Mn(12) 配合物是比它们的前身如 1 更好的 SMM 物理性质的研究模型。

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