Siddiqui Rafia, Patra Sayan, Shivam Kumar, Sil Arnab, Guchhait Biswajit, Tian Haiquan, Kataria Ramesh, Goswami Soumyabrata, Venugopalan Paloth, Patra Ranjan
Department of Chemistry and Centre for Advance Studies in Chemistry, Panjab University, Chandigarh 160014, India.
Amity Institute of Click Chemistry Research & Studies (AICCRS), Amity University, Noida 201303, India.
Inorg Chem. 2022 Jul 25;61(29):11484-11496. doi: 10.1021/acs.inorgchem.2c02004. Epub 2022 Jul 8.
Five new mononuclear lanthanide complexes, [LnL][EtNH]·THF/HO (Ln = Nd, Tb, Dy) (HL = 2-bis(2-hydroxy-3,5-dichloro benzyl)aminomethyl]pyridine), Ln = Nd (), Tb (), and Dy (), and (HL = 2-bis(2-hydroxy-3,5-dibromo benzyl)aminomethyl]pyridine), Ln = Nd (, HO) and Tb (), were synthesized and structurally characterized by single-crystal X-ray diffraction analyses. Being isostructural in all the five cases, the metal center is octa-coordinated with a triangular dodecahedron ( symmetry) geometry, and it is independent of the halogen substitution (Cl/Br). This close similarity is due to the composite interplay of hydrogen/halogen bond interactions that control the overall crystal packing, yet notable differences in association patterns among the individual ones arise from the subtle stereo-electronic requirement of individual molecules in the three-dimensional (3D) architecture. Hirshfeld surface and density functional theory (DFT) calculations clearly vouch for the importance of the hydrogen bond and halogen bond interactions observed in the structure. Detailed magnetic measurements using direct-current and alternating-current susceptibility measurements show slow magnetic relaxation in , a characteristic feature of the single-molecule magnets (SMMs), which is not shown by and . Steady-state and time-resolved photoluminescence of Tb(III) complexes shows a strong ligand-to-metal energy transfer that can be modulated by changing the substitution on phenolic ligands. The results from these analyses indicate that it may be advantageous to consider the subtle role of hydrogen bond (HB)/halogen bond (XB) intermolecular interactions judiciously for the design of SMMs and luminescent materials based on halogen-substituted ligands.
合成了五个新的单核镧系配合物,[LnL][EtNH]·THF/HO(Ln = Nd、Tb、Dy)(HL = 2 - 双(2 - 羟基 - 3,5 - 二氯苄基)氨甲基]吡啶),Ln = Nd()、Tb()和Dy(),以及(HL = 2 - 双(2 - 羟基 - 3,5 - 二溴苄基)氨甲基]吡啶),Ln = Nd(,HO)和Tb(),并通过单晶X射线衍射分析对其进行了结构表征。在所有这五个例子中结构相同,金属中心为八配位,具有三角十二面体(对称性)几何构型,且与卤素取代(Cl/Br)无关。这种紧密的相似性归因于控制整体晶体堆积的氢/卤键相互作用的复合相互作用,但各个配合物之间缔合模式的显著差异源于三维(3D)结构中单个分子的微妙立体电子需求。Hirshfeld表面和密度泛函理论(DFT)计算清楚地证明了结构中观察到的氢键和卤键相互作用的重要性。使用直流和交流磁化率测量进行的详细磁性测量表明,中存在缓慢的磁弛豫,这是单分子磁体(SMMs)的一个特征,而和中未显示出这种特征。Tb(III)配合物的稳态和时间分辨光致发光显示出强烈的配体到金属的能量转移,可通过改变酚类配体上的取代来调节。这些分析结果表明,对于基于卤素取代配体的单分子磁体和发光材料的设计,明智地考虑氢键(HB)/卤键(XB)分子间相互作用的微妙作用可能是有利的。