Univ Rennes, INSA Rennes, CNRS UMR 6226 , "Institut des Sciences Chimiques de Rennes" , F-35000 Rennes , France.
Inorg Chem. 2019 Dec 2;58(23):16180-16193. doi: 10.1021/acs.inorgchem.9b02668. Epub 2019 Nov 12.
Reactions in solvothermal or microwave-assisted conditions between a hexanuclear rare-earth entity ([Ln] with Ln = Eu-Dy) and -halogeno-benzoic acids lead to three series of isostructural complexes with respective chemical formulas [Ln(μ-OH)(HO)(NO)(3-cb)]·4CHCN, [Ln(μ-OH)(HO)(NO)(3-bb)]·6CHCN, and [Ln(μ-OH)(HO)(NO)(3-ib)]·6CHCN, where 3-cb, 3-bb, and 3-ib represent 3-chloro-, 3-bromo-, and 3-iodo-benzoate, respectively. These three series of compounds are almost isostructural. Their luminescent properties, in the solid and solution states, have been studied in detail and compared. This study shows that hexanuclear complexes own strong intermetallic energy transfers. This makes these complexes good candidates for thermometric probes in solid state or in solution state.
在溶剂热或微波辅助条件下,六核稀土实体([Ln],其中 Ln = Eu-Dy)与 -卤代苯甲酸反应,生成了三个系列的同构配合物,它们的化学式分别为[Ln(μ-OH)(HO)(NO)(3-cb)]·4CHCN、[Ln(μ-OH)(HO)(NO)(3-bb)]·6CHCN 和 [Ln(μ-OH)(HO)(NO)(3-ib)]·6CHCN,其中 3-cb、3-bb 和 3-ib 分别代表 3-氯代、3-溴代和 3-碘代苯甲酸。这三个系列的化合物几乎具有相同的结构。详细研究并比较了它们在固态和溶液态下的发光性质。这项研究表明,六核配合物具有很强的金属间能量转移。这使得这些配合物成为固态或溶液状态下的热敏探针的良好候选物。