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首页> 外文期刊>Inorganic Chemistry Frontiers >Regulating the single-molecule magnetic properties of phenol oxygen-bridged binuclear lanthanide complexes through the electronic and spatial effect of the substituents
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Regulating the single-molecule magnetic properties of phenol oxygen-bridged binuclear lanthanide complexes through the electronic and spatial effect of the substituents

机译:通过电子和空间效应来调节酚氧桥接双核镧系元素的单分子磁性,通过取代基的空间效应

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A series of binuclear lanthanide complexes with formulas [Dy-2(DMOMP)(2)(TFNB)(4)]center dot CH3CH2OCH2CH3 (1), [Dy-2(DMOEP)(2)(TFNB)(4)] (2), [Dy-2(DMOEP)(2)(BTFA)(4)] (3), [Dy-2(DMOEP)(2)(TTA)(4)] (4), and [Dy-2(DMOAP)(2)(TFNB)(4)] (5), (DMOMP = 2,6-dimethoxy-4-methylphenol, DMOEP = methyl 3,5-dimethoxy-4-hydroxybenzoate, DMOAP = 3,5-dimethoxy-4-hydroxybenzaldehyde, TFNB = 4,4,4-trifluoro-1-(2-naphthyl)-1,3-butanedione, BTFA = benzoyltrifluoroacetone, TTA = 2-thenoyltrifluoroacetone) were structurally and magnetically characterized. The core structures of these complexes consist of dinuclear lanthanide(iii) ions bridged firmly by phenoxyl O atoms from two nearly horizontal and isolated 2,6-dimethoxyphenol (DMOP) derivatives, which provide an ideal model to investigate the synergistic contribution of single-ion anisotropy and magnetic exchange interaction. In this case, the modification was carried out on the para position of the phenol hydroxyl of the DMOP bridge and on one side of the terminal substituent of the beta-diketonate co-ligand with electron-donating/withdrawing substituents that also exhibit different steric hindrance. Following this, the effective energy barrier (U-eff) of magnetization reversal was enhanced by ten times in magnitude at the most, and the hysteresis temperature increased from zero to 2.5 K.
机译:一系列双核镧系元硅烷配合物,具有式[DY-2(DMOMP)(2)(2)(TFNB)(4)]中心点CH 3 CH 2 CH 2 CH 3(1),[DY-2(DMOEP)(2)(TFNB)(4)]( 2),[DY-2(DMOEP)(2)(2)(BTFA)(4)](3),[DY-2(DMOEP)(2)(TTA)(4)](4),和[DY-2 (DMOAP)(2)(TFNB)(4)](5),(DMOMP = 2,6-二甲氧基-4-甲基苯酚,DMOEP = 3,5-二甲氧基-4-羟基苯甲酸盐,DMOAP = 3,5-二甲氧基-4-羟基苯甲醛,TFNB = 4,4,4-三氟-1-(2-萘基)-1,3-丁二烯,BTFA =苯甲酰氟丙酮,TTA = 2-单苯甲酰丙酮在结构上和磁性表征。这些配合物的核心结构由二核镧系元素(III)离子牢固地由苯氧基O原子桥接,来自两个几乎水平的和分离的2,6-二甲氧基酚(DMOP)衍生物提供理想的模型来研究单离子的协同贡献各向异性和磁交换相互作用。在这种情况下,在DMOP桥的苯酚羟基的帕拉位置和β-二酮酸酯共配体的末端取代基的一侧进行修饰,用电子提供/抽出取代基,也表现出不同的空间阻断。在此之后,最多增加了磁化反转的有效能量屏障(U-EFF)的幅度幅度为10倍,滞后温度从零增加到2.5k。

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