首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Coligand and Solvent Effects on the Architectures and Spin-Crossover Properties of (4,4)-Connected Iron(II) Coordination Polymers
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Coligand and Solvent Effects on the Architectures and Spin-Crossover Properties of (4,4)-Connected Iron(II) Coordination Polymers

机译:配体和溶剂对(4,4)连接的铁(II)配位聚合物的结构和自旋交叉特性的影响

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The self-assemblies of 1,4-bis(pyrid-4-yl)benzene (bpb) and Fe(NCX)(2) (X = S, Se, BH3) afforded six coordination polymers with the general formula of [Fe(bpb)(2)(NCX)(2)].Y (X = S and Y = 3C(2)H(5)OH.2.5H(2)O for complex 4, X = S and Y = 2C(2)H(5)OH for 5, X = Se and Y = 2C(2)H(5)OH.H2O for 6, X = Se and Y = 0.67CH(2)Cl(2).1.33C(2)H(5)OH.0.67H(2)O for 7, X = BH3 and Y = 3C(2)H(5)OH.2H(2)O for 8, X = BH3 and Y = 2CH(2)Cl(2).2C(2)H(5)OH for 9). The frameworks of complexes 4 and 5 with the NCS- anion as coligand are supramolecular isomers, of which complex 4 features a threefold self-interpenetrated three-dimensional (3D) CdSO4-type topological structure with a Schlafli symbol of 65.8, and complex 5 is a two-dimensional (2D) 44 rhombic grid network. These two complexes are purely high-spin systems. Complexes 6 and 7 with the NCSe- anion as coligand, both having the 3D 65.8 CdSO4-type framework, show gradual and incomplete spin-crossover behaviors with transition temperature T-1/2 being equal to 86 and 96 K, respectively. The usage of NCBH3- anion as coligand leads to the formation of 2D 44 rhombic grid networks for both complexes 8 and 9, which undergo relatively abrupt, complete spin crossover with T-1/2 being equal to 247 and 189 K, respectively. The structural divergences are attributed to the coligands NCX- (X = S, Se, BH3) and solvent molecules. Meanwhile, a significant coligand effect is observed on the spin-crossover behaviors of these complexes, and the completeness and transition temperature of spin-state conversion depends on the nature of the coligand, that is, T-1/2(NCS-) < T-1/2(NCSe-) < T-1/2(NCBH3-). These results further facilitate the design and synthesis of spin-crossover complexes with spin-state conversion
机译:1,4-双(吡啶-4-基)苯(bpb)和Fe(NCX)(2)(X = S,Se,BH3)的自组装得到了六种配位聚合物,其通式为[Fe( bpb)(2)(NCX)(2)]。Y(X = S并且Y = 3C(2)H(5)OH.2.5H(2)O对于复杂 4 ,X =对于 5 ,S和Y = 2C(2)H(5)OH,对于 6 ,X = Se和Y = 2C(2)H(5)OH.H2O, X = Se且Y = 0.67CH(2)Cl(2).1.33C(2)H(5)OH.0.67H(2)O对于 7 ,X = BH3和Y = 3C 8 的(2)H(5)OH.2H(2)O,X = BH3且Y = 2CH(2)Cl(2).2C(2)H(5)OH表示 8 粗体> 9 )。 NCS-阴离子为大肠菌群的复合物 4 5 的框架是超分子异构体,其中复合物 4 具有三重自交的三Schlafli符号为65.8且复数 5 的三维(3D)CdSO4型拓扑结构是二维(2D)44菱形网格网络。这两个复合体纯粹是高转速系统。具有3C 65.8 CdSO4型骨架的NCSeion为大肠菌素的配合物 6 7 ,在过渡温度T-1时显示出逐渐和不完全的自旋交叉行为/ 2分别等于86和96K。将NCBH3-阴离子用作大肠菌素会导致复合体 8 9 形成2D 44菱形网格网络,这些复合物经历了相对突然的,与T-的完全自旋交叉1/2分别等于247和189K。结构差异归因于大肠菌NCX-(X = S,Se,BH3)和溶剂分子。同时,观察到大分子大肠菌素对这些复合物的自旋交叉行为,并且自旋态转化的完整性和转变温度取决于大肠菌素的性质,即T-1 / 2(NCS-)< T-1 / 2(NCSe-)

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