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首页> 外文期刊>Chemistry - A European Journal >Magnetothermal Studies of a Series of Coordination Clusters Built from Ferromagnetically Coupled {MnII4MnIII6} Supertetrahedral Units
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Magnetothermal Studies of a Series of Coordination Clusters Built from Ferromagnetically Coupled {MnII4MnIII6} Supertetrahedral Units

机译:铁磁耦合{Mn II 4 Mn III 6 }超四面体单元构建的一系列配位簇的磁热研究

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Three high-nuclearity mixed valence manganeseII/III coordination clusters, have been synthesised, that is, [MnIII6MnII43-O)4(HL1)63-N3)33-Br)(Br)](N3)0.7/(Br)0.33 MeCN2 MeOH (1) (H3L1=3-methylpentan-1,3,5-triol), [MnIII11MnII64-O)83-Cl)4(μ,μ3-O2CMe)2(μ,μ-L2)10Cl2.34(O2CMe)0.66(py)3(MeCN)2]7 MeCN (2) (H2L2=2,2-dimethyl-1,3-propanediol and py is pyridine), and [MnIII12MnII74-O)83-η1N3)8(HL3)12(MeCN)6]Cl210 MeOH MeCN (3) (H3L3=2,6-bis(hydroxymethyl)-4-methylphenol) with high ground-spin states, S=22, 28±1, and 83/2, respectively; their magnetothermal properties have been studied. The three compounds are based on a common supertetrahedral building block as seen in the Mn10 cluster. This fundamental magnetic unit is made up of a tetrahedron of MnII ions with six MnIII ions placed midway along each edge giving an inscribed octahedron. Thus, the fundamental building unit as represented by compound 1 can be described as a Mn10 supertetrahedron. Compounds 2 and 3 correspond to two such units joined by a common edge or vertex, respectively, resulting in Mn17 and Mn19 coordination clusters. Magnetothermal studies reveal that all three compounds show interesting long-range magnetic ordering at low temperature, originating from negligible magnetic anisotropy of the compounds; compound 2 shows the largest magnetocaloric effect among the three compounds. This is as expected and can be attributed to the presence of a small magnetic anisotropy, and low-lying excited states in compound 2.
机译:合成了三个高核价锰 II / III 配位簇,即[Mn III 6 Mn II 4 (μ 3 -O) 4 (HL 1 6 (μ 3 -N 3 3 (μ 3 -Br)(Br)](N 3 0.7 /(Br) 0.3 3 MeCN2 MeOH(1)(H 3 L 1 = 3-methylpentan-1,3,5-triol),[Mn III 11 Mn II 6 < / sub>(μ 4 -O) 8 (μ 3 -Cl) 4 (μ,μ< sub> 3 -O 2 CMe) 2 (μ,μ-L 2 10 Cl 2.34 (O 2 CMe) 0.66 (py) 3 (MeCN) 2 ] 7 MeCN(2)(H 2 L 2 = 2,2-二甲基-1,3-丙二醇,py为吡啶),[Mn III 12 Mn II 7 (μ 4 -O) 8 (μ 3 -η 1 N 3 8 (HL 3 12 (MeCN) 6 ] Cl 2 10 MeOH M具有高基旋态的eCN(3)(H 3 L 3 = 2,6-双(羟甲基)-4-甲基苯酚),S = 22,28± 1和83/2;已经研究了它们的磁热性质。三种化合物均基于Mn 10 团簇中常见的超四面体结构单元。这个基本的磁性单元由Mn II 离子的四面体和六个Mn III 离子沿每个边的中点组成,形成一个内切八面体。因此,可以将由化合物1表示的基本构建单元描述为Mn 10 超四面体。化合物2和3分别对应于两个这样的单元,它们通过共同的边缘或顶点相连,从而形成Mn 17 和Mn 19 配位簇。磁热研究表明,这三种化合物在低温下均表现出有趣的远距离磁有序性,这是由于化合物的磁各向异性可忽略不计。化合物2在这三种化合物中显示出最大的磁热效应。这是预料之中的,并且可以归因于化合物2中存在小的磁各向异性和低态激发态。

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