Jiajaroen Suwadee, Dungkaew Winya, Kielar Filip, Sukwattanasinitt Mongkol, Sahasithiwat Somboon, Zenno Hikaru, Hayami Shinya, Azam Mohammad, Al-Resayes Saud I, Chainok Kittipong
Thammasat University Research Unit in Multifunctional Crystalline Materials and Applications (TU-MCMA), Faculty of Science and Technology, Thammasat University, Pathum Thani 12121, Thailand.
Department of Chemistry, Faculty of Science and Technology, Thammasat University, Pathum Thani 12121, Thailand.
Dalton Trans. 2022 May 17;51(19):7420-7435. doi: 10.1039/d2dt00007e.
Four series of lanthanide-based coordination polymers (LnCPs), namely [Ln(Brbdc)(MeOH)] (1Ln; Ln = Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy), [Ln(Brbdc)(NO)(MeOH)] (2Ln; Ln = Ce, Pr, Nd, Sm), [Ln(Brbdc)(NO)(MeOH)] (3Ln; Ln = Gd, Tb, Dy), and [Ln(Brbdc)(HO)(MeOH)] (4Ln; Ln = Gd, Tb, Dy) have been synthesized by reacting hydrated lanthanide(III) salts with tetrabromobenzene-1,4-dicarboxylic acid (HBrbdc) in different solvents under solvothermal conditions. The structural diversity found in the system mainly resulted from the effects of anions, solvents, and the variation in the ionic radii of the lanthanide(III) ions. Compounds in series 1Ln feature a two-dimensional (2D) layered structure with sql topology based on {(Ln(COO))(μ-COO)} secondary building units (SBUs). Compounds in series 2Ln and 3Ln comprise, respectively, infinite uniform and alternate chains of {Ln(COO)} SBUs that are assembled into a similar network topology to 1Ln. Meanwhile, compounds in series 4Ln feature 3D coordination networks of a α-Po topological net consisting of binuclear {Ln(COO)} SBUs. The formation of polymeric networks in series 1Ln-4Ln is facilitated by the numerous coordination sites of the ligand Brbdc and the fact that its bromine atoms can participate in the formation of various types of intermolecular interactions. The solid-state photoluminescence studies on Eu- (1Eu) and Tb- (1Tb, 3Tb, 4Tb) containing compounds indicate that the Brbdc ligands can efficiently sensitize Eu and Tb emission. Notably, such compounds exhibit highly sensitive fluorescence sensing for acetone, water, and Fe ions the fluorescence quenching effect. As the representatives of the series, activated 1Eu, 2Pr, 3Tb, and 4Tb show the maximum CO uptake capacities of 170.4, 273.7, 255.3, and 303.5 cm g, respectively, at 50 bar and 298 K with good repeatability of the adsorption-desorption properties. Magnetic studies indicate that the Gd- and Dy-based compounds 1Gd, 1Dy, 3Gd, 3Dy, and 4Gd show simple paramagnetic behaviours, whereas compound 4Dy exhibits weak ferromagnetic interactions.
通过在溶剂热条件下,使水合镧系(III)盐与四溴苯 - 1,4 - 二羧酸(HBrbdc)在不同溶剂中反应,合成了四个系列的基于镧系的配位聚合物(LnCPs),即[Ln(Brbdc)(MeOH)](1Ln;Ln = Ce、Pr、Nd、Sm、Eu、Gd、Tb、Dy)、[Ln(Brbdc)(NO)(MeOH)](2Ln;Ln = Ce、Pr、Nd、Sm)、[Ln(Brbdc)(NO)(MeOH)](3Ln;Ln = Gd、Tb、Dy)和[Ln(Brbdc)(HO)(MeOH)](4Ln;Ln = Gd、Tb、Dy)。该体系中发现的结构多样性主要源于阴离子、溶剂的影响以及镧系(III)离子半径的变化。系列1Ln中的化合物具有基于{(Ln(COO))(μ - COO)}二级结构单元(SBUs)的sql拓扑二维(2D)层状结构。系列2Ln和3Ln中的化合物分别由{Ln(COO)} SBUs的无限均匀且交替的链组成,这些链组装成与1Ln相似的网络拓扑结构。同时,系列4Ln中的化合物具有由双核{Ln(COO)} SBUs组成的α - Po拓扑网络的三维配位网络。配体Brbdc的众多配位位点及其溴原子可参与形成各种类型分子间相互作用的事实促进了系列1Ln - 4Ln中聚合物网络的形成。对含Eu的(1Eu)和含Tb的(1Tb、3Tb、4Tb)化合物的固态光致发光研究表明,Brbdc配体可有效敏化Eu和Tb的发射。值得注意的是,这类化合物对丙酮、水和Fe离子表现出高度灵敏的荧光传感——荧光猝灭效应。作为该系列的代表,活化后的1Eu、2Pr、3Tb和4Tb在50 bar和298 K下分别显示出最大CO吸附容量为170.4、273.7、255.3和303.5 cm³ g⁻¹,且吸附 - 脱附性能具有良好的重复性。磁性研究表明,基于Gd和Dy的化合物1Gd、1Dy、3Gd、3Dy和4Gd表现出简单的顺磁行为,而化合物4Dy表现出弱铁磁相互作用。