García-Valdivia Antonio A, Seco Jose M, Cepeda Javier, Rodríguez-Diéguez Antonio
Departamento de Química Inorgánica, Universidad de Granada , 18071 Granada, Spain.
Departamento de Química Aplicada, Facultad de Química, Universidad del País Vasco/Euskal Herriko Unibertsitatea, UPV/EHU , 20018 San Sebastián, Spain.
Inorg Chem. 2017 Nov 20;56(22):13897-13912. doi: 10.1021/acs.inorgchem.7b02020. Epub 2017 Nov 9.
Detailed structural, magnetic, and photoluminescence (PL) characterization of four new compounds based on 1-methylimidazole-5-carboxylate (mimc) ligand and transition metal ions, namely [Ni(mimc)(HO)] (1), [Co(μ-mimc)] (2), {[Cu(μ-mimc)(HO)]·2HO} (3), and [Cd(μ-mimc)(HO)] (4) is reported. The structural diversity found in the family of compounds derives from the coordination versatility of the ligand, which coordinates as a terminal ligand to give a supramolecular network of monomeric entities in 1 or acts as a bridging linker to build isoreticular 2D coordination polymers (CPs) in 2-4. Magnetic direct-current (dc) susceptibility data have been measured for compounds 1-3 to analyze the exchange interactions among paramagnetic centers, which have been indeed supported by calculations based on broken symmetry (BS) and density functional theory (DFT) methodology. The temperature dependence of susceptibility and magnetization data of 2 are indicative of easy-plane anisotropy (D = +12.9 cm, E = +0.5 cm) that involves a bistable M = ±1/2 ground state. Alternating-current (ac) susceptibility curves exhibit field-induced single-ion magnet (SIM) behavior that occurs below 14 K, which is characterized by two spin relaxation processes of distinct nature: fast relaxation of single ions proceeding through multiple mechanisms (U = 26 K) and a slow relaxation attributed to interactions along the polymeric crystal building. Exhaustive PL analysis of compound 4 in the solid state confirms low-temperature phosphorescent green emission consisting of radiative lifetimes in the range of 0.25-0.43 s, which explains the afterglow observed during about 1 s after the removal of the UV source. Time-dependent DFT and computational calculations to estimate phosphorescent vertical transitions have been also employed to provide an accurate description of the PL performance of this long-lasting phosphor.
报道了基于1-甲基咪唑-5-羧酸盐(mimc)配体和过渡金属离子的四种新化合物,即[Ni(mimc)(H₂O)](1)、[Co(μ-mimc)](2)、{[Cu(μ-mimc)(H₂O)]·2H₂O}(3)和[Cd(μ-mimc)(H₂O)](4)的详细结构、磁性和光致发光(PL)表征。该化合物家族中发现的结构多样性源于配体的配位多样性,其在1中作为端基配体配位形成单体实体的超分子网络,或在2-4中作为桥连连接体构建同构二维配位聚合物(CPs)。已对化合物1-3测量了磁直流(dc)磁化率数据,以分析顺磁中心之间的交换相互作用,基于破缺对称性(BS)和密度泛函理论(DFT)方法的计算确实支持了这一点。2的磁化率和磁化强度数据的温度依赖性表明存在易面各向异性(D = +12.9 cm⁻¹,E = +0.5 cm⁻¹),涉及双稳态M = ±1/2基态。交流(ac)磁化率曲线在14 K以下表现出场诱导单离子磁体(SIM)行为,其特征在于两种不同性质的自旋弛豫过程:通过多种机制进行的单离子快速弛豫(U = 26 K)和归因于沿聚合物晶体结构相互作用的缓慢弛豫。对化合物4在固态下进行的详尽PL分析证实了低温磷光绿色发射,其辐射寿命在0.25 - 0.43 s范围内,这解释了在移除紫外光源后约1 s内观察到的余辉现象。还采用了含时DFT和计算计算来估计磷光垂直跃迁,以准确描述这种长效磷光体的PL性能。