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首页> 外文期刊>Chemistry: A European journal >Analysis of the Role of Peripheral Ligands Coordinated to Zn-II in Enhancing the Energy Barrier in Luminescent Linear Trinuclear Zn-Dy-Zn Single-Molecule Magnets
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Analysis of the Role of Peripheral Ligands Coordinated to Zn-II in Enhancing the Energy Barrier in Luminescent Linear Trinuclear Zn-Dy-Zn Single-Molecule Magnets

机译:Zn-II配位体配体在增强发光线性三核Zn-Dy-Zn单分子磁体的能垒中的作用分析

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Three new Dy complexes have been prepared according to a complex-as-ligand strategy. Structural determinations indicate that the central Dy ion is surrounded by two LZn units (L2- is the di-deprotonated form of the N2O2 compartmental N,N-2,2-dimethylpropylenedi(3-methoxysalicylideneiminato) Schiff base. The Dy ions are nonacoordinate to eight oxygen atoms from the two L ligands and to a water molecule. The Zn ions are pentacoordinate in all cases, linked to the N2O2 atoms from L, and the apical position of the Zn coordination sphere is occupied by a water molecule or bromide or chloride ions. These resulting complexes, formulated (LZnX)-Dy-(LZnX), are tricationic with X=H2O and monocationic with X=Br or Cl. They behave as field-free single-molecule magnets (SMMs) with effective energy barriers (U-eff) for the reversal of the magnetization of 96.9(6)K with (0)=2.4x10(-7)s, 146.8(5)K with (0)=9.2x10(-8)s, and 146.1(10)K with (0)=9.9x10(-8)s for compounds with ZnOH2, ZnBr, and ZnCl motifs, respectively. The Cole-Cole plots exhibit semicircular shapes with parameters in the range of 0.19 to 0.29, which suggests multiple relaxation processes. Under a dc applied magnetic field of 1000Oe, the quantum tunneling of magnetization (QTM) is partly or fully suppressed and the energy barriers increase to U-eff=128.6(5)K and (0)=1.8x10(-8)s for 1, U-eff=214.7K and (0)=9.8x10(-9)s for 2, and U-eff=202.4K and (0)=1.5x10(-8)s for 3. The two pairs of largely negatively charged phenoxido oxygen atoms with short DyO bonds are positioned at opposite sides of the Dy3+ ion, which thus creates a strong crystal field that stabilizes the axial M-J=+/- 15/2 doublet as the ground Kramers doublet. Although the compound with the ZnOH2 motifs possesses the larger negative charges on the phenolate oxygen atoms, as confirmed by using DFT calculations, it exhibits the larger distortions of the DyO9 coordination polyhedron from ideal geometries and a smaller U-eff value. Ab initio calculations support the easy-axis anisotropy of the ground Kramers doublet and predict zero-field SMM behavior through Orbach and TA-QTM relaxations via the first excited Kramers doublet, which leads to large energy barriers. In accordance with the experimental results, ab initio calculations have also shown that, compared with water, the peripheral halide ligands coordinated to the Zn2+ ions increase the barrier height when the distortions of the DyO9 have a negative effect. All the complexes exhibit metal-centered luminescence after excitation into the UV -* absorption band of ligand L2- at =335nm, which results in the appearance of the characteristic Dy-III ((F9/2HJ/2)-F-4-H-6; J=15/2, 13/2) emission bands in the visible region.
机译:根据配体配合物策略制备了三种新的Dy配合物。结构确定表明,中心Dy离子被两个LZn单元包围(L2-是N2O2间隔N,N-2,2-二甲基丙烯二(3-甲氧基水杨基亚胺基)Schiff碱的二去质子化形式。来自两个L配体和一个水分子的八个氧原子Zn离子在所有情况下都是五配位的,与L的N2O2原子相连,并且锌配位球的顶端位置被水分子,溴化物或氯化物占据这些最终形成的配合物,由(LZnX)-Dy-(LZnX)制成,在X = H2O时为三阳离子,在X = Br或Cl时为单阳离子。它们表现为具有有效能垒的无场单分子磁体(SMM)。 U-eff)用于反转(0)= 2.4x10(-7)s时96.9(6)K,(0)= 9.2x10(-8)s时146.8(5)K和146.1(分别具有ZnOH2,ZnBr和ZnCl基序的化合物的10)K(0)= 9.9x10(-8)s。Cole-Cole图显示半圆形,其参数为e的范围为0.19至0.29,表明存在多个松弛过程。在1000Oe的直流施加磁场下,磁化的量子隧穿(QTM)被部分或完全抑制,并且对于以下情况,能垒增加到U-eff = 128.6(5)K和(0)= 1.8x10(-8)s 1,对于2,U-eff = 214.7K,(0)= 9.8x10(-9)s,对于3,U-eff = 202.4K,(0)= 1.5x10(-8)s,两对带有短DyO键的带负电荷的苯氧氧原子位于Dy3 +离子的相对侧,因此会形成一个强大的晶场,该稳定的晶场会随着地面Kramers双峰而使轴向MJ = + /-15/2双峰稳定下来。尽管具有ZnOH2基序的化合物在酚盐氧原子上具有较大的负电荷,但已通过DFT计算得到证实,但由于理想的几何形状,DyO9配位多面体的畸变较大,而U-eff值较小。从头算计算支持地面Kramers双重峰的易轴各向异性,并通过第一个激发的Kramers双重峰通过Orbach和TA-QTM弛豫来预测零场SMM行为,这会导致较大的能垒。根据实验结果,从头算也表明与水相比,当DyO9的形变具有负面影响时,与Zn2 +离子配位的外围卤化物配体会增加势垒高度。在= 335nm处的配体L2-的UV-*吸收带激发后,所有络合物均表现出以金属为中心的发光,这导致了特征Dy-III((F9 / 2HJ / 2)-F-4-H -6; J = 15/2,13/2)在可见光区域的发射带。

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