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基于一种分隔配体的不同核数镧系元素配合物的光谱研究。

Spectroscopic studies of lanthanide complexes of varying nuclearity based on a compartmentalised ligand.

作者信息

Olea-Román Daniela, Bélanger-Desmarais Nicolas, Flores-Álamo Marcos, Bazán Claudia, Thouin Félix, Reber Christian, Castillo-Blum Silvia E

机构信息

Facultad de Química, Universidad Nacional Autónoma de México, Ciudad Universitaria, Coyoacán, D. F. 04510, México.

出版信息

Dalton Trans. 2015 Oct 21;44(39):17175-88. doi: 10.1039/c5dt02563j. Epub 2015 Sep 16.

Abstract

The synthesis, characterization and solid-state luminescence spectroscopy of mononuclear (f), heterodinuclear (d-f) and heterotrinuclear (d-f-d) coordination compounds with the compartmental ligand N,N'-bis(3-hydroxyl salicylidene)benzene-1,2-diamine (H2L) are reported. The trivalent lanthanide ions Nd(III), Sm(III), Eu(III), Gd(III), Tb(III) and Dy(III) as single metal centres or in combination with either Zn(II) or Ni(II) were coordinated. Compounds are characterised by elemental analyses, IR, 1D and 2D solution (1)H and (13)C NMR spectroscopy, measurements of magnetic moments and solid state UV-Vis-NIR reflectance, luminescence and Raman spectroscopy techniques. Crystal structures of the dinuclear compounds [SmZn(O2NO)3(L)(OH2)]·EtOH and [DyZn(O2NO)2(Cl)(L)(EtOH)]·3EtOH and the trinuclear compound TbZn2(L)2(Cl)2(OH2)·EtOH are presented, where samarium(iii) displays a coordination number of ten, with a bicapped cubic geometry, while for the dysprosium compound a nine-coordinated environment with a tricapped trigonal prismatic geometry is shown. Their crystals belong to the triclinic system and the P1[combining macron] space group. The coordination number for terbium(iii) in the trinuclear complex is nine, with a tricapped trigonal prismatic geometry, and its crystal belongs to the monoclinic system, space group C2/c. For these three compounds, the zinc ion stabilises a penta-coordinated environment with square pyramid geometry. All mononuclear and dinuclear compounds are neutral, whereas the trinuclear complexes are ionic. The results of DFT theoretical calculations for the ligand (H2L) are used to assign the ligand singlet and triplet excited state energy levels. Luminescence studies of the neodymium compounds indicate that the ligand is a sensitizer for NIR emitters.

摘要

报道了具有隔室配体N,N'-双(3-羟基水杨醛)苯-1,2-二胺(H2L)的单核(f)、异双核(d-f)和异三核(d-f-d)配位化合物的合成、表征及固态发光光谱。三价镧系离子Nd(III)、Sm(III)、Eu(III)、Gd(III)、Tb(III)和Dy(III)作为单一金属中心或与Zn(II)或Ni(II)组合进行配位。通过元素分析、红外光谱、一维和二维溶液(1)H和(13)C核磁共振光谱、磁矩测量以及固态紫外-可见-近红外反射光谱、发光光谱和拉曼光谱技术对化合物进行表征。给出了双核化合物[SmZn(O2NO)3(L)(OH2)]·EtOH和[DyZn(O2NO)2(Cl)(L)(EtOH)]·3EtOH以及三核化合物TbZn2(L)2(Cl)2(OH2)·EtOH的晶体结构,其中钐(iii)的配位数为10,具有双帽立方几何构型,而镝化合物显示出具有三帽三角棱柱几何构型的九配位环境。它们的晶体属于三斜晶系和P1[上加横线]空间群。三核配合物中铽(iii)的配位数为9,具有三帽三角棱柱几何构型,其晶体属于单斜晶系,空间群为C2/c。对于这三种化合物,锌离子稳定了具有方锥几何构型的五配位环境。所有单核和双核化合物都是中性的,而三核配合物是离子性的。配体(H2L)的密度泛函理论计算结果用于确定配体单重态和三重态激发态能级。钕化合物的发光研究表明该配体是近红外发射体的敏化剂。

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