Polyoxoarsenotungstate in Oxalis Triangularis Arrangement Favors Slow Magnetic Relaxation for Both Prolate and Oblate Lanthanides

IF 3.2 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Crystal Growth & Design Pub Date : 2024-07-25 DOI:10.1021/acs.cgd.4c00583
Sandhya Kapurwan, Pradip Kumar Sahu, Sanjit Konar
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Abstract

A series of Ln(III)-substituted polyoxometalates (POMs) having molecular formula CsxK15−x[(AsW9O33)3Ln2(H2O)7W4O9yH2O were synthesized by using dilacunary arsenotungstate [As2W19O67(H2O)]14− as a precursor with Ln(III) ions [Ln = Dy (1), Tb (2), Er (3), Ho (4), Yb (5), Eu (6), x = 6−7, y = 24−40]. The Ln-POM complexes comprise a fusion of three trivacant arsenotungstates (ATs) [α-AsW9O33]9− building units resembling an oxalis triangularis-like arrangement sealing a heterometallic [Ln2(H2O)7(W4O9)]12+ core unit. Detailed magnetic studies disclose that complex 1 shows slow relaxation of magnetization at zero and 2000 Oe external dc fields due to its high axial anisotropy. An energy barrier of 56.48 K is obtained under the 2000 Oe applied dc field, whereas only the QTM process is favorable in the absence of dc field. On the other hand, complex 5 shows field-induced slow relaxation of magnetization with 5 and 6 K phenomenological energy barriers under 1500 and 2000 Oe applied dc fields. Furthermore, ab initio calculations confirm that high axial ground states get stabilized with minimum transverse anisotropy for complex 1 whereas easy plane anisotropy is observed for complex 5. It is also observed that the arrangement of the POM cluster provides intermediate axial symmetry (C2v) around the metal centers, stabilizing higher mj states along with high anisotropy for both Dy(III) and Yb(III) ions in complexes 1 and 5. Thus, both Dy(III) (oblate ion) and Yb(III) (prolate ion) Ln-POM clusters display slow magnetic relaxation, despite having different spatial distributions of 4f electronic density. The solid-state photoluminescence spectra of complexes 14 and 6 were investigated, which displays the characteristic emission of Ln(III) components based on 4f−4f transitions.

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三角形排列的多氧胂钨酸盐有利于扁平镧系元素和扁平镧系元素的慢磁弛豫
以稀土砷钨酸盐[As2W19O67(H2O)]14-为前驱体,用 Ln(III)离子[Ln = Dy (1)、Tb (2)、Er (3)、Ho (4)、Yb (5)、Eu (6)]合成了一系列分子式为 CsxK15-x[(AsW9O33)3Ln2(H2O)7W4O9]-yH2O的 Ln(III)-substituted polyoxometalates (POMs)、Tb (2)、Er (3)、Ho (4)、Yb (5)、Eu (6),x = 6-7,y = 24-40]。Ln-POM 复合物由三个三价砷钨酸盐(ATs)[α-AsW9O33]9- 构建单元融合而成,类似于氧化物三角形排列,密封了一个杂金属[Ln2(H2O)7(W4O9)]12+ 核心单元。详细的磁性研究表明,由于复合物 1 具有高度的轴向各向异性,因此它在零和 2000 Oe 外部直流电场中显示出缓慢的磁化弛豫。在 2000 Oe 的外加直流电场下,会产生 56.48 K 的能障,而在无直流电场的情况下,只有 QTM 过程是有利的。另一方面,在 1500 和 2000 Oe 的直流电场下,复合物 5 显示出场诱导的缓慢磁化弛豫,现象能垒分别为 5 和 6 K。此外,ab initio 计算证实,复合物 1 的高轴向基态稳定,横向各向异性最小,而复合物 5 则容易出现平面各向异性。此外,还观察到 POM 簇的排列提供了围绕金属中心的中间轴对称性(C2v),从而稳定了复合物 1 和 5 中 Dy(III)和 Yb(III)离子的高 mj 态以及高各向异性。因此,尽管 4f 电子密度的空间分布不同,但 Dy(III)(扁球形离子)和 Yb(III)(长球形离子)Ln-POM 团簇都显示出缓慢的磁弛豫。对复合物 1-4 和 6 的固态光致发光光谱进行了研究,结果显示了基于 4f-4f 转变的 Ln(III) 成分的发射特征。
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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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