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Density functional theory meta GGA study of water adsorption in MIL-53(Cr)

机译:密度泛函理论Meta GGA研究MIL-53(Cr)中的水吸附

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We use density functional theory meta-generalized gradient approximation TPSS + D3(BJ) + U + J calculations to investigate the energetics and geometry of water molecules in the flexible metalorganic framework material Materials of Institut Lavoisier (MIL)-53(Cr) as a function of cell volume. The critical concentration of water to cause the transition from the large pore (lp) to the narrow pore (np) structure is estimated to be about 0.13 water molecule per Cr. At a concentration x = 1 water molecule per Cr, the zero-temperature np and lp configurations each have a hydrogen bond between the H of each framework hydroxyl group and water oxygen (O-w). At intermediate volumes, water dimer-like configurations are observed. A concentration x = 1.25 leads to hydrogen bonding between water molecules in the np phase that is absent for x = 1. Our results suggest possible mechanisms for pore closing in hydrated MIL-53(Cr). (C) 2019 International Centre for Diffraction Data.
机译:我们使用密度泛函理论的元广义梯度近似TPSS + D3(BJ)+ U + J计算来研究Lavoisier研究所柔性材料(MIL)-53(Cr)中水分子的能级和几何形状细胞体积的功能。导致从大孔(lp)过渡到窄孔(np)结构的水的临界浓度估计为每Cr约0.13水分子。在每个Cr浓度x = 1水分子的情况下,零温度np和lp构型在每个骨架羟基的H和水氧(O-w)之间均具有氢键。在中等体积下,观察到类似于水二聚体的构型。 x = 1.25的浓度会导致np相中水分子之间的氢键结合,而x = 1则不存在。我们的结果表明,水合MIL-53(Cr)中孔的封闭机理可能是。 (C)2019年国际衍射数据中心。

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