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在一个三元铜(II)-三唑-磺基间苯二甲酸盐体系中观察到的预设计构象柔性五核簇的多样自组装:合成、结构和磁性。

Diverse self-assembly from predesigned conformationally flexible pentanuclear clusters observed in a ternary copper(II)-triazolate-sulfoisophthalate system: synthesis, structure, and magnetism.

机构信息

College of Chemistry, Key Laboratory of Inorganic-Organic Hybrid Functional Material Chemistry, Ministry of Education, Tianjin Key Laboratory of Structure and Performance for Functional Molecules, Tianjin Normal University , Tianjin 300387, People's Republic of China.

出版信息

Inorg Chem. 2014 Jan 6;53(1):327-35. doi: 10.1021/ic402280p. Epub 2013 Dec 16.

DOI:10.1021/ic402280p
PMID:24328301
Abstract

Self-assembly from the predesigned Cu(II)5 secondary building unit (SBU) in the ternary Cu(II)-triazolate-sulfoisophthalate system generates three interesting magnetic samples: an open pillared-layer framework with nanosized Cu(II)30 metallamacrocycle-based sublayer (1), a (3,6)-connected 2-fold interpenetrating network consisting of alternating Cu(II)5 and Cu(II)1 cores (2), and a (4,8)-connected architecture constructed from centrosymmetric Cu(II)7 clusters and four-branched 5-sulfoisophthalate (sip(3-)) connectors (3). These various structures significantly result from the variable connectivity and the slight expansion of the predetermined conformationally flexible Cu(II)5 SBUs. Furthermore, these intriguing structural motifs in 1-3 essentially induce different magnetic phenomena. A field-dependent metamagnetic transition from antiferromagnetic ordering to weak ferromagnetism is observed in the frustrated Cu(II)30-based sublayer of 1. The paramagnetic Cu(II)1 core in 2 virtually contributes to an S = (1)/2 spin ground state due to the completely compensated magnetic moment in the 1,2,3-triazolate (ta(-))-bridged Cu(II)5 cluster containing ribbon. In contrast, strong antiferromagnetic interactions in the locally centrosymmetric Cu(II)7 cluster lead to an overall S = (1)/2 spin ground state of 3. Thus, the SBU-derived self-assembly strategy provides important hints for polymetallic cluster based high-dimensional magnetic materials, which also brings a new vision for the design and construction of novel functional materials.

摘要

从预先设计的 Cu(II)5 次级建筑单元 (SBU) 在三元 Cu(II)-三唑-磺基间苯二甲酸酯体系中自组装生成了三个有趣的磁性样品:一个具有纳米级 Cu(II)30 金属大环基亚层的开放式支柱层框架(1),一个由交替的 Cu(II)5 和 Cu(II)1 核组成的(3,6)连接的 2 重互穿网络(2),以及一个由对称中心的 Cu(II)7 簇和四叉形 5-磺基间苯二甲酸(sip(3-)) 连接器构成的(4,8)连接架构(3)。这些不同的结构主要是由于预定构象柔性 Cu(II)5 SBU 的可变连接和轻微扩展。此外,1-3 中的这些有趣的结构基元基本上诱导了不同的磁现象。在 1 中,具有受挫折的 Cu(II)30 基亚层的场依赖的反铁磁序到弱铁磁性的转变被观察到。2 中的顺磁 Cu(II)1 核由于 ribbon 中包含的 1,2,3-三唑(ta(-))-桥接 Cu(II)5 簇中完全补偿的磁矩,实际上有助于 S = (1)/2 自旋基态。相比之下,局部对称中心的 Cu(II)7 簇中的强反铁磁相互作用导致 3 的整体 S = (1)/2 自旋基态。因此,SBU 衍生的自组装策略为基于多金属簇的多维磁性材料提供了重要线索,也为新型功能材料的设计和构建带来了新的视野。

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