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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Quantum chemical study on surface complex structures of phosphate on gibbsite
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Quantum chemical study on surface complex structures of phosphate on gibbsite

机译:三水铝石表面磷酸盐表面复杂结构的量子化学研究。

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摘要

Quantum mechanics calculations based on the density functional theory (DFT) were used to identify phosphate surface complexes on gibbsite at low and high pH. The different phosphate species were represented using the Al-6(OH)(18)(H2O)(6) cluster model considering four different geometries: monodentate mononuclear (Pmm), monodentate binuclear (Pmb), bidentate mononuclear (Pbm) and bidentate binuclear (Pbb). The corresponding adsorption reactions were modelled via ligand exchange between phosphate species and surface functional groups (hydroxyls and protonated hydroxyls at high and low pH, respectively). The theoretical results indicate that phosphate surface complexes are thermodynamically more favored at acid pH, in agreement with experimental evidences. The first step in these reactions, i.e., the generation of required aluminum vacant sites, was predicted to be particularly favorable when singly coordinated aquo groups are released. Stretching and bending vibrational frequencies associated with the different surface structures were calculated at both pH conditions. The corresponding values at low pH were found to be shifted to higher frequencies with respect to those ones at high pH. ATR-FTIR studies were also carried out. The resulting spectra are dominated by a strong band Within the 800-840 cm(-1) interval due to P-O-H stretching modes. The corresponding peak appearing around 820 cm(-1) at high pH is shifted to lower frequencies with respect to the position at low pH, a tendency well predicted by DFT calculations. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于密度泛函理论(DFT)的量子力学计算可用于识别低pH和高pH下三水铝石上的磷酸盐表面复合物。考虑到四个不同的几何形状,使用Al-6(OH)(18)(H2O)(6)簇模型表示了不同的磷酸盐种类:单齿单核(Pmm),单齿双核(Pmb),双齿单核(Pbm)和双齿双核(Pbb)。通过磷酸盐种类和表面官能团(分别在高和低pH下的羟基和质子化的羟基)之间的配体交换来模拟相应的吸附反应。理论结果表明,在酸性pH下,磷酸盐表面配合物在热力学上更受青睐,与实验证据一致。这些反应的第一步,即所需的铝空位的产生,预计在释放单配位的水基时特别有利。在两个pH条件下都计算了与不同表面结构相关的拉伸和弯曲振动频率。发现在低pH下的相应值相对于在高pH下的那些值移向更高的频率。还进行了ATR-FTIR研究。由于P-O-H拉伸模式,所得光谱由800-840 cm(-1)区间内的强带主导。相对于低pH值的位置,在高pH值处出现在820 cm(-1)附近的相应峰移动到较低的频率,这种趋势已通过DFT计算很好地预测。 (C)2015 Elsevier B.V.保留所有权利。

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