Biswas Mousumi, Sañudo E Carolina, Ray Debashis
Department of Chemistry, Indian Institute of Technology, Kharagpur, 721 302, India.
Departament de Química Inorgànica i Orgànica, Universitat de Barcelona, Diagonal 645, 08028, Barcelona, Spain.
Chem Asian J. 2020 Sep 1;15(17):2731-2741. doi: 10.1002/asia.202000679. Epub 2020 Jul 30.
A family of 3d-4f aggregates have been reported through guiding the dual coordination modes of ligand anion (HL ) and in situ generated ancillary bridge driven self-assembly coordination responses toward two different types of metal ions. Reactions of lanthanide(III) nitrate (Ln=Gd, Tb, Dy, Ho and Yb), nickel(II) acetate and phenol-based ditopic ligand anion of 2-[{(2-hydroxypropyl)imino}methyl]-6-methoxyphenol (H L) in MeCN-MeOH (3 : 1) mixture and LiOH provided five new octanuclear Ni-4f coordination aggregates from two Ni Ln cubanes. Single-crystal X-ray diffraction analysis reveals that all the members of the family are isostructural, with the central core formed from the coupling of two distorted [Ni Ln O ] heterometallic cubanes [Ni Ln (HL) (μ -OH) (OH)(OAc) ] (Ln=Gd (1), Tb (2), Dy (3), Ho (4) and Yb (5)). Higher coordination demand of 4f ions induced the coupling of the two cubes by (OH)(OAc) bridges. Variable temperature magnetic study reveals weak coupling between the Ni and Ln ions. For the Tb (2) and Dy (3) analogs, the compounds are SMMs without an applied dc field, whereas the Gd (1) analogue is not an SMM. The observation revealed thus that the anisotropy of the Ln ions is central to display the SMM behavior within this structurally intriguing family of compounds.
通过引导配体阴离子(HL)的双重配位模式以及原位生成辅助桥,驱动自组装配位反应以应对两种不同类型的金属离子,已报道了一系列三维 - 四维聚集体。硝酸镧(III)(Ln = Gd、Tb、Dy、Ho和Yb)、乙酸镍(II)与2 - [{(2 - 羟丙基)亚氨基}甲基] - 6 - 甲氧基苯酚(HL)的酚基双齿配体阴离子在乙腈 - 甲醇(3∶1)混合物中与氢氧化锂反应,从两个镍 - 镧八面体生成了五个新的八核镍 - 四维配位聚集体。单晶X射线衍射分析表明,该系列的所有成员都是同构的,其中心核由两个扭曲的[NiLnO]异金属八面体[NiLn(HL)(μ - OH)(OH)(OAc)](Ln = Gd (1)、Tb (2)、Dy (3)、Ho (4)和Yb (5))耦合形成。4f离子较高的配位需求通过(OH)(OAc)桥诱导了两个八面体的耦合。变温磁性研究表明镍离子和镧系离子之间存在弱耦合。对于Tb (2)和Dy (3)类似物,这些化合物在没有施加直流磁场的情况下是单分子磁体,而Gd (1)类似物不是单分子磁体。因此,该观察结果表明,镧系离子的各向异性对于在这个结构有趣的化合物家族中展现单分子磁体行为至关重要。