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Layered exfoliable crystalline materials based on Sm-, Eu- and Eu/Gd-2-phenylsuccinate frameworks. Crystal structure, topology and luminescence properties

机译:基于Sm-,Eu-和Eu / Gd-2-苯基琥珀酸酯骨架的层状可剥落晶体材料。晶体结构,拓扑和发光特性

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摘要

Three new layered metal–organic frameworks (MOFs) based on 2-phenylsuccinic acid (H2psa) and lanthanide ions with the formula [Ln2(C10H8O4)3(H2O)] (Ln = Eu, Sm and Eu–Gd) have been synthesized under solvothermal conditions and fully characterized by single-crystal X-ray diffraction, thermal and vibrational analyses. The compounds are isostructural featuring 2D frameworks that consist of infinite zigzag chains composed of [LnO8] and [LnO8(H2O)] edge-sharing polyhedra linked by psa ligands leading to layers further connected by weak π–π interactions in an edge orientation. Moreover, a topological study was carried out to obtain the simplified net for better comparison with structurally related compounds. The Eu-psa crystals were exfoliated into nanolayers after miniaturization by addition of sodium acetate as a capping agent in the reaction medium. Scanning electron microscopy was applied to characterize the miniaturized samples whereas the exfoliated hybrid nanosheets were studied by atomic force microscopy. The photoluminescence (PL) properties of the bulk compounds as well as the miniaturized and exfoliated materials were investigated and compared with other related ones. An exhaustive study of the Eu(III)-based MOFs was performed on the basis of the obtained PL parameters (excitation and emission spectra, kr, knr, intrinsic quantum yields and lifetimes) to explore the underlying structure–property relationships.
机译:在以下条件下合成了三种新的基于2-苯基琥珀酸(H2psa)和镧系离子的层状金属有机骨架(MOF),分子式为[Ln2(C10H8O4)3(H2O)](Ln = Eu,Sm和Eu–Gd)溶剂热条件,并通过单晶X射线衍射,热分析和振动分析充分表征。这些化合物具有2D骨架的同构结构,该骨架由无限长的锯齿形链组成,该锯齿形链由[LnO8]和[LnO8(H2O)]边缘共享多面体构成,并通过psa配体连接,从而导致这些层通过边缘方向上的弱π-π相互作用进一步连接。此外,进行了拓扑研究以获得简化的网络,以便更好地与结构相关的化合物进行比较。通过在反应介质中添加乙酸钠作为封端剂,使微型化后的Eu-psa晶体剥落成纳米层。扫描电子显微镜用于表征小型化样品,而脱落的杂化纳米片通过原子力显微镜研究。研究了块状化合物以及小型化和剥离型材料的光致发光(PL)特性,并将其与其他相关材料进行了比较。在获得的PL参数(激发和发射光谱,kr,knr,固有量子产率和寿命)的基础上,对基于Eu(III)的MOF进行了详尽的研究,以探索潜在的结构-性质关系。

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