Ganaie Aabid Bashir, Iftikhar Khalid
Lanthanide Research Laboratory, Department of Chemistry, Jamia Millia Islamia, New Delhi 110025, India.
ACS Omega. 2021 Aug 12;6(33):21207-21226. doi: 10.1021/acsomega.0c05976. eCollection 2021 Aug 24.
Heteroleptic homo dinuclear complexes [Sm(fod)(μ-bpp)Sm(fod)] and [Eu(fod)(μ-bpp)Eu(fod)] and their diamagnetic analogue [Lu(fod)(μ-bpp)Lu(fod)] (fod is the anion of 6,6,7,7,8,8,8- heptafluoro-2,2-dimethyl-3,5-octanedione (Hfod) and bpp is 2,3-bis(2-pyridyl)pyrazine) are synthesized and thoroughly characterized. The lanthanum gave a 1:1 adduct of La(fod) and bpp with the molecular formula of [La(fod)bpp]. The H NMR and H-H COSY spectra of the complexes were used to assign the proton resonances. In the case of paramagnetic Sm and Eu complexes, the methine (of the fod moiety) and the bpp resonances are shifted in the opposite direction and the paramagnetic shifts are dipolar in nature, which decrease with increasing distance of the proton from the metal ion. The single-crystal X-ray analyses reveal that the complexes (Sm and Eu) are dinuclear and crystallize in the triclinic 1 space group. Each metal in a given complex is eight coordinate by coordinating with six oxygen atoms of three fod moieties and two nitrogen atoms of the bpp. Of the two metal centers, in a given complex, one has a distorted square antiprism arrangement and the other acquires a distorted dodecahedron geometry. The Sparkle RM1 and PM7 optimized structures of the complexes are also presented and compared with the crystal structure. Theoretically observed bond distances are in excellent agreement with the experimental values, and the RMS deviations for the optimized structures are 2.878, 2.217, 2.564, and 2.675 Å. The photophysical properties of Sm and Eu complexes are investigated in different solvents, solid, and PMMA-doped thin hybrid films. The spectroscopic parameters (the Judd-Ofelt intensity parameters, radiative parameters, and intrinsic quantum yield) of each Eu sites are calculated using the overlap polyhedra method. The theoretically obtained parameters are close to the experimental results. The lifetime of the excited state is 38.74 μs for Sm and 713.62 μs for the Eu complex in the solid state.
合成并全面表征了异配位均二核配合物[Sm(fod)(μ - bpp)Sm(fod)]、[Eu(fod)(μ - bpp)Eu(fod)]及其抗磁性类似物[Lu(fod)(μ - bpp)Lu(fod)](fod为6,6,7,7,8,8,8 - 七氟 - 2,2 - 二甲基 - 3,5 - 辛二酮(Hfod)的阴离子,bpp为2,3 - 双(2 - 吡啶基)吡嗪)。镧生成了La(fod)与bpp的1:1加合物,分子式为[La(fod)bpp]。利用配合物的¹H NMR和¹H - ¹H COSY谱确定质子共振峰。对于顺磁性的Sm和Eu配合物,(fod部分的)次甲基和bpp共振峰向相反方向移动,顺磁位移本质上是偶极的,且随着质子与金属离子距离的增加而减小。单晶X射线分析表明,(Sm和Eu)配合物为二核,结晶于三斜晶系P1空间群。给定配合物中的每个金属通过与三个fod部分的六个氧原子和bpp的两个氮原子配位而呈八配位。在给定配合物的两个金属中心中,一个具有扭曲的四方反棱柱构型,另一个具有扭曲的十二面体几何构型。还给出了配合物的Sparkle RM1和PM7优化结构,并与晶体结构进行了比较。理论观测的键长与实验值高度吻合,优化结构的均方根偏差分别为2.878、2.217、2.564和2.675 Å。研究了Sm和Eu配合物在不同溶剂、固体以及PMMA掺杂的混合薄膜中的光物理性质。使用重叠多面体方法计算了每个Eu位点的光谱参数(贾德 - 奥费尔特强度参数、辐射参数和本征量子产率)。理论得到的参数与实验结果接近。固态下,Sm配合物的激发态寿命为38.74 μs,Eu配合物的激发态寿命为713.62 μs。