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聚丙烯接枝丙烯酸的介电性能的密度泛函研究。

A density functional study on dielectric properties of acrylic acid grafted polypropylene.

机构信息

Department of Electrical Energy Engineering, Tampere University of Technology, Tampere, Finland.

出版信息

J Chem Phys. 2011 Apr 7;134(13):134904. doi: 10.1063/1.3556704.

Abstract

Influence of acrylic acid grafting of isotactic polypropylene on the dielectric properties of the polymer is investigated using density functional theory (DFT) calculations, both in the molecular modeling and three-dimensional (3D) bulk periodic system frameworks. In our molecular modeling calculations, polarizability volume, and polarizability volume per mass which reflects the permittivity of the polymer, as well as the HOMO-LUMO gap, one of the important measures indicating the electrical breakdown voltage strength, were examined for oligomers with various chain lengths and carboxyl mixture ratios. When a polypropylene oligomer is grafted with carboxyl groups (cf. acrylic acid), our calculations show that the increase of the polarizability volume α' of the oligomer is proportional to the increase of its mass m, while the ratio α'/m decreases from the value of a pure polymer when increasing the mixture ratio. The decreasing ratio of α'/m under carboxyl grafting indicates that the material permittivity might also decrease if the mass density of the material remains constant. Furthermore, our calculations show that the HOMO-LUMO gap energy decreases by only about 15% in grafting, but this decrease seems to be independent on the mixture ratio of carboxyl. This indicates that by doping polymers with additives better dielectric properties can be tailored. Finally, using the first-principles molecular DFT results for polarizability volume per mass in connection with the classical Clausius-Mossotti relation, we have estimated static permittivity for acrylic acid grafted polypropylene, assuming the structural density keeping constant under grafting. The computed permittivity values are in a qualitative agreement with the recent experiments, showing increasing tendency of the permittivity as a function of the grafting composition. In order to validate our molecular DFT based approach, we have also carried out extensive three-dimensional bulk periodic first-principles total-energy calculations in the frameworks of the density functional theory and density functional perturbation theory (DFPT) for crystalline acrylic acid grafted polypropylene. Interestingly, the computed electronic and dielectric properties behave very similarly between the simplified molecular DFT modeling and the more realistic 3D bulk periodic DFPT method. In particular, the static permittivity values [ε(r)(0)] from the molecular DFT-Clausius-Mossotti modeling are in excellent agreement with the high-frequency dielectric constant values (ε(∞)) from the DFPT method. This obviously implies that the chain-to-chain interaction to dielectric and electronic properties of acrylic acid polypropylene, to a first approximation, can be neglected, therefore justifying the usage of molecular DFT modeling in our calculations.

摘要

使用密度泛函理论(DFT)计算,在分子建模和三维(3D)体周期性系统框架中,研究了聚丙烯酸接枝对聚合物介电性能的影响。在我们的分子建模计算中,极化率体积和极化率体积与质量的比值反映了聚合物的介电常数,以及 HOMO-LUMO 能隙,这是指示电击穿电压强度的重要措施之一,用于各种链长和羧基混合物比的低聚物。当聚丙烯低聚物与羧基(例如丙烯酸)接枝时,我们的计算表明,低聚物的极化率体积α'的增加与质量 m 的增加成正比,而当混合物比增加时,α'/m 的比值从纯聚合物的值降低。在接枝羧基时α'/m 的降低表明,如果材料的质量密度保持不变,材料的介电常数也可能降低。此外,我们的计算表明,HOMO-LUMO 能隙能量仅在接枝时降低约 15%,但这种降低似乎与羧基的混合物比无关。这表明,通过用添加剂掺杂聚合物,可以更好地调整介电性能。最后,使用连接到经典 Clausius-Mossotti 关系的每单位质量的极化率体积的第一性原理分子 DFT 结果,我们假设在接枝下结构密度保持不变,估算了接枝聚丙烯酸的静态介电常数。计算的介电常数值与最近的实验定性一致,表明介电常数随接枝组成的增加而增加的趋势。为了验证我们基于分子 DFT 的方法,我们还在密度泛函理论和密度泛函微扰理论(DFPT)框架内,针对结晶聚丙烯酸接枝聚丙烯进行了广泛的三维体周期性全能量计算。有趣的是,简化的分子 DFT 建模和更真实的 3D 体周期性 DFPT 方法之间的电子和介电性质的计算非常相似。特别是,从分子 DFT-Clausius-Mossotti 建模得出的静态介电常数[ε(r)(0)]与 DFPT 方法得出的高频介电常数(ε(∞))非常吻合。这显然意味着,在第一近似值下,丙烯酸聚丙烯的链间相互作用对介电和电子性质可以忽略不计,因此证明了在我们的计算中使用分子 DFT 建模是合理的。

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