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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Charge distribution in metal organic framework materials:transferability to a preliminary molecular simulation study of the CO2 adsorption in the MIL-53 (Al) system
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Charge distribution in metal organic framework materials:transferability to a preliminary molecular simulation study of the CO2 adsorption in the MIL-53 (Al) system

机译:金属有机骨架材料中的电荷分布:可转移至MIL-53(Al)系统中CO2吸附的初步分子模拟研究

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Density functional theory calculations have been performed in order to extract the charge distribution in the aluminium-containing MIL-53 structure,to allow further computational studies of adsorption in these materials.Both cluster and periodic methods have been used and the charges calculated for each atom constituting the organic and inorganic part of the material,were discussed.Preliminary grand canonical Monte Carlo simulations,based on a consistent set of potential parameters and this newly derived charge distribution,predicted for enthalpies of adsorption for CO2 at low coverage in the "large" and "narrow" pore versions of MIL-53 (Al) to be significantly different.These calculated enthalpies reproduced the two distinct ranges of values observed by microcalorimetry on either side of 6 bars quite well.This agreement between experiment and simulation validated our previous assumption,suggesting a structural switching of the hybrid material during the adsorption process.The microscopic mode of interaction between the hybrid porous framework and the CO2 adsorption was then carefully analysed in both of the MIL-53 (Al) structures.
机译:为了提取含铝的MIL-53结构中的电荷分布,已经进行了密度泛函理论计算,以便对这些材料中的吸附进行进一步的计算研究。已经使用了簇和周期方法,并且为每个原子计算了电荷讨论了构成材料的有机和无机部分的初步大正则蒙特卡罗模拟。该模拟基于一致的势参数集和此新导出的电荷分布,预测了“大”区域低覆盖率下CO2的吸附焓。与MIL-53(Al)的“窄”孔版本明显不同。这些计算的焓很好地再现了用微量热法在6个条形的两侧观察到的两个不同范围的值。实验与模拟之间的这种一致性验证了我们先前的假设,建议在吸附过程中混合材料的结构转换。然后在两种MIL-53(Al)结构中仔细分析了杂化多孔骨架与CO2吸附之间的相互作用的pic模式。

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