Chakraborty Amit, Bag Prasenjit, Rivière Eric, Mallah Talal, Chandrasekhar Vadapalli
Department of Chemistry, Indian Institute of Technology Kanpur, Kanpur-208016, India.
Dalton Trans. 2014 Jun 21;43(23):8921-32. doi: 10.1039/c4dt00209a.
A family of dinuclear 3d-4f heterobimetallic complexes [LNi(H2O)(μ-OAc)Ln(NO3)2]·CH3CN; {Ln = Dy(III) (1), Tb(III) (2), Ho(III) (3), Gd(III) (4), Er(III) (5), Y(III) (6)} have been synthesized by utilizing a ferrocene-based, dual compartmental ligand H2L. 1-6 are isostructural and crystallize in the triclinic (P1) space group. In these complexes Ni(II) is present in the inner coordination sphere of the dianionic L ligand; Ln(III) is encapsulated in the outer coordination pocket. Ni(II) shows a 2N, 4O coordination environment in a distorted octahedral geometry, while the Ln(III) ion possesses a 9O coordination environment in a distorted tricapped trigonal prismatic geometry. ESI-MS studies suggest that the structural integrity of 1-6 is retained in solution. Electrochemical studies reveal that these complexes show a reversible one-electron response typical of the ferrocene motif along with an irreversible one-electron oxidation involving the Ni(II)/Ni(III) couple. Magnetic studies revealed the presence of ferromagnetic exchange coupling between Ni(II) and Ln(III) centers as shown by the increase of χMT value upon cooling below 50 K for compounds 1, 2, 4 and 5. Further, dynamic magnetic susceptibility measurements (1-3) confirm the absence of an out-of-phase (χ'') signal at zero dc fields. However, when these measurements were carried out at 1000 Oe dc field the χ'' signal was observed, although maxima could not be detected up to 2 K.
利用基于二茂铁的双隔室配体H2L合成了一系列双核3d-4f异双金属配合物[LNi(H2O)(μ-OAc)Ln(NO3)2]·CH3CN;{Ln = Dy(III) (1)、Tb(III) (2)、Ho(III) (3)、Gd(III) (4)、Er(III) (5)、Y(III) (6)}。1-6是同构的,结晶于三斜(P1)空间群。在这些配合物中,Ni(II)存在于二价阴离子L配体的内配位球中;Ln(III)被封装在外配位口袋中。Ni(II)在扭曲的八面体几何构型中呈现2N、4O配位环境,而Ln(III)离子在扭曲的三帽三棱柱几何构型中具有9O配位环境。电喷雾电离质谱(ESI-MS)研究表明1-6在溶液中保持结构完整性。电化学研究表明,这些配合物显示出二茂铁基序典型的可逆单电子响应以及涉及Ni(II)/Ni(III)电对的不可逆单电子氧化。磁性研究表明,对于化合物1、2、4和5,在冷却至50 K以下时,χMT值增加,表明Ni(II)和Ln(III)中心之间存在铁磁交换耦合。此外,动态磁化率测量(1-3)证实,在零直流场下不存在异相(χ'')信号。然而,当在1000 Oe直流场下进行这些测量时,观察到了χ''信号,尽管在高达2 K时未检测到最大值。