Abdallah Ahmad, Daiguebonne Carole, Suffren Yan, Rojo Amandine, Demange Valérie, Bernot Kevin, Calvez Guillaume, Guillou Olivier
Univ Rennes, INSA Rennes, CNRS UMR 6226, Institut des Sciences Chimiques de Rennes, F-35000 Rennes , France.
Inorg Chem. 2019 Jan 22;58(2):1317-1329. doi: 10.1021/acs.inorgchem.8b02815. Epub 2018 Dec 31.
Microcrystalline core-shell powders of lanthanide-based coordination polymers with general chemical formula ([Ln(cpbOH)])@([Ln'(cpbOH)]) with Hcpb = 1,4-carboxyphenylboronic acid have been synthesized and structurally characterized. Their luminescent properties have been studied. They are drastically different from those of heterolanthanide coordination polymers, also called "molecular alloys", that present the same crystal structure and chemical composition. Study of the photophysical properties of core-shell lanthanide-based coordination polymers reveals that it is possible to control efficiently the intermetallic energy transfers between lanthanide ions. Furthermore, multiemissive compounds, under unique irradiation, in both visible and infrared regions are easily feasible. Core-shell microstructured lanthanide-based coordination polymers have also been prepared with terephthalic (Hbdc) and trimesic (Htma) acids as ligands for evidencing that lanthanide-ion-based coordination compounds are excellent candidates for 3D molecular epitaxial growth.
已合成并对通式为([Ln(cpbOH)])@([Ln'(cpbOH)])(其中Hcpb = 1,4 - 羧基苯硼酸)的镧系元素基配位聚合物微晶核壳粉末进行了结构表征。研究了它们的发光性质。它们与具有相同晶体结构和化学组成的异镧系配位聚合物(也称为“分子合金”)的发光性质截然不同。对核壳型镧系元素基配位聚合物光物理性质的研究表明,可以有效控制镧系离子之间的金属间能量转移。此外,在独特的辐照下,在可见光和红外区域都能轻松实现多发射化合物。还制备了以对苯二甲酸(Hbdc)和均苯三甲酸(Htma)为配体的核壳微结构镧系元素基配位聚合物,以证明基于镧系离子的配位化合物是三维分子外延生长的优秀候选材料。