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Unusual High Thermal Stablility of a 2D → 3D Polycatenated Fe(II) Metal–Organic Framework Showing Guest-Dependent Spin-Crossover Behavior and High Spin-Transition Temperature

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Figshare2016-02-20 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Unusual_High_Thermal_Stablility_of_a_2D_3D_Polycatenated_Fe_II_Metal_Organic_Framework_Showing_Guest_Dependent_Spin_Crossover_Behavior_and_High_Spin_Transition_Temperature/2500801
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A novel three-dimensional (3D) Fe­(II) metal–organic framework (MOF), [Fe2(pptp)4·2H2O]n (1), constructed from the rigid 2-(3-(4-(pyridin-4-yl)­phenyl)-1H-1,2,4-triazol-5-yl)­pyridine (Hpptp) ligand was synthesized and structurally characterized. Complex 1 exhibits a two-dimensional (2D) → 3D polycatenated framework based on inclined interlocked 2D 44-sql grids. Variable-temperature magnetic susceptibility measurements reveal that 1 is a rare example exhibiting a thermal-driven dehydration and consequently accompanied by a dramatic change of spin crossover (SCO) behaviors. Its spin transition temperature is as high as 390 K with ∼20% high-spin character. Moreover, the framework of 1 shows unusual thermal stability to nearly 500 °C.
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2016-02-20
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