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首页> 外文期刊>Journal of Physics. Condensed Matter >Thermal conductivity of model zeolites: molecular dynamics simulation study
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Thermal conductivity of model zeolites: molecular dynamics simulation study

机译:模型沸石的导热系数:分子动力学模拟研究

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The thermal conductivity of model zeolites was investigated using non-equilibrium molecular dynamics calculations. This type of calculation was found to overestimate the thermal conductivity of low-density silica polymorphs. A better reproduction of the experimental results was found for zeolites, and this was related to the lower phonon mean free path. The thermal conductivity of framework silicates was shown to be determined primarily by the vibrations of the continuous oxygen sublattice. Thus, the most drastic suppression of the heat transfer was related to alterations of the O-O distances; for example, a sixfold reduction in thermal conductivity compared to that of siliceous LTA zeolite was found for LTA-AlPO4. Framework cations were shown to affect the heat transfer by changing the vibrational modes of the structural building units of the framework and non-framework counter-cations, by disturbing the oxygen sublattice locally and acting as Rayleigh and resonant scatterers. A model assuming the heat transfer to be due only to non-dispersive acoustic phonons failed to reproduce the dependence of the thermal conductivity on the mass of the cations and the unit-cell dimension, thus suggesting a more sophisticated mechanism of heat transfer to be operative in framework materials. The effect of non-framework non-ionic species on the thermal conductivity was shown to be determined by their effect on the characteristics of the oxygen framework vibrations. Thus, repulsive interactions between the oxygen sublattice and Xe8 clusters, reducing the anisotropy and anharmonicity of the oxygen vibrations, give rise to enhanced heat transfer in LTA-SiO2 at ambient conditions.
机译:使用非平衡分子动力学计算研究了模型沸石的热导率。发现这种类型的计算高估了低密度二氧化硅多晶型物的热导率。对于沸石,实验结果得到更好的再现,这与较低的声子平均自由程有关。结果表明,骨架硅酸盐的热导率主要取决于连续氧亚晶格的振动。因此,对传热的最大抑制与O-O距离的改变有关。例如,发现LTA-AlPO4的导热系数是硅质LTA沸石的六倍。研究表明,框架阳离子通过改变框架和非框架结构阳离子的结构单元的振动模式,通过局部干扰氧亚晶格并充当瑞利散射和共振散射体,从而影响热传递。假设热传递仅归因于非分散声子的模型无法重现热导率对阳离子质量和晶胞尺寸的依赖性,因此建议采用更复杂的热传递机理在框架材料中。结果表明,非骨架非离子物质对热导率的影响取决于它们对氧气骨架振动特性的影响。因此,氧亚晶格和Xe8团簇之间的排斥相互作用降低了氧振动的各向异性和非谐性,从而在环境条件下增强了LTA-SiO2中的传热。

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