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Pentagram-type Ln 15 (Ln = Dy, Tb, Eu, Sm, Ho) clusters with different anion templates: magnetic and luminescence properties.

Ying ZouWei LvZhe XueJie PanXiao-Yu LiGuo-Ming Wang
Published in: Dalton transactions (Cambridge, England : 2003) (2022)
Five 15-nuclearity lanthanide clusters were obtained under solvothermal conditions based on N -tris(hydroxymethyl)methylglycine (H 5 thmmg) with molecular formulas Ln 15 (OH) 20 (H 4 thmmg) 10 (H 2 O) 10 · x Cl·(15 - x )NO 3 (Ln = Dy, x = 15 (1); Ln = Tb, x = 11 (2); Ln = Eu, x = 13 (3); Ln = Sm, x = 15 (4); and Ln = Ho, x = 15 (5)). They have the same pentagram-type metal cores made up of five cubane-like [Ln 4 (μ 3 -OH) 4 ] units by sharing vertical Ln 3+ ions and their peripheries are all protected by ten H 4 thmmg - ligands and ten coordinated H 2 O. Such structural Sm 15 and Ho 15 clusters are reported for the first time. For 1, 4 and 5, these metal-hydroxide cores are further stabilized only by free Cl - ions, whereas NO 3 - and Cl - ions both operate as anionic templates for 2 and 3 to balance the positive charge and to promote lanthanide metal ion aggregation. These are the first reported Ln15 clusters self-assembled by NO 3 - and Cl - anion templates. The luminescence behaviors of 2 and 3 show the characteristic emissions of the corresponding Ln 3+ (Ln = Tb, Eu) ions. The temperature-dependent luminescence of 2 and 3 reveals that their emission intensities increase as the temperature drops, and good linear relationships exist in the 120-300 K range, so 2 and 3 are potential luminescent molecular thermometers. Moreover, 2 and 3 exhibit high quantum yields (QYs) (58.05% for 2 and 17.34% for 3) and long luminescence lifetimes ( τ = 934 μs for 2, τ = 242 μs for 3). In addition, 1 displays slow magnetic relaxation behavior.
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