论文标题

对有机光伏应用的聚合物 - 富烯大量异质结的机械性能的分子见解

Molecular Insights into the Mechanical Properties of Polymer-Fullerene Bulk Heterojunctions for Organic Photovoltaic Applications

论文作者

Yoshimoto, Yuta, Sugiyama, Sou, Shimada, Shuntaro, Kaneko, Toshihiro, Takagi, Shu, Kinefuchi, Ikuya

论文摘要

我们研究了使用粗粒分子动力学模拟的$π$缀合的聚合物材料的机械性能和由guly型聚(3-己基噻吩)(P3HT)(P3HT)和富勒烯C $ _ {60} $组成的机械性能。具体而言,我们执行P3HT的拉伸模拟:C $ _ {60} $复合材料,具有不同程度的聚合和C $ _ {60} $质量分数以获得其应力应变响应。 Decomposition of stress tensor into kinetic energy and virial contributions indicates that the tensile moduli of the pure P3HT samples are greatly dependent on non-bonded interactions and on bonded interactions associated with bond-stretching, while the addition of C$_{60}$ leads to an increase in the tensile modulus originating from enhanced non-bonded interactions associated with C$_{60}$.此外,p3HT的拉伸强度:c $ _ {60} $样品与分子链纠缠良好相关,其特征在于从原始路径分析获得的每个链的平均扭结数。我们还发现,随着c $ _ {60} $质量分数的增加,表征应变软化的上和下收益点变得更加明显。持续的同源性分析表明,在拉伸变形过程中,产量点的出现与微型生物的合并良好相关,从而导致较大的空隙产生。这些结果提供了对$π$ - 偶联的聚合物 - 富烯复合材料的机械性能的分子决定因素的基本理解,这也可以帮助解释和预测含有富勒烯的其他聚合物复合材料的机械性能。

We investigate the mechanical properties of $π$-conjugated polymeric materials composed of regioregular poly(3-hexylthiophene) (P3HT) and fullerene C$_{60}$ using coarse-grained molecular dynamics simulations. Specifically, we perform tensile simulations of P3HT:C$_{60}$ composites with varied degrees of polymerization and C$_{60}$ mass fractions to obtain their stress-strain responses. Decomposition of stress tensor into kinetic energy and virial contributions indicates that the tensile moduli of the pure P3HT samples are greatly dependent on non-bonded interactions and on bonded interactions associated with bond-stretching, while the addition of C$_{60}$ leads to an increase in the tensile modulus originating from enhanced non-bonded interactions associated with C$_{60}$. Additionally, the tensile strength of the P3HT:C$_{60}$ samples correlates well with molecular chain entanglements, which are characterized by the average number of kinks per chain obtained from primitive path analysis. We also find that the upper and lower yield points characterizing strain softening become more pronounced with increasing C$_{60}$ mass fraction. Persistent homology analysis indicates that the emergence of the yield points correlates well with the coalescence of microvoids in the course of tensile deformation, resulting in the generation of larger voids. These results provide a fundamental understanding of the molecular determinants of the mechanical properties of $π$-conjugated polymer-fullerene composites, which can also help to interpret and predict the mechanical properties of other polymer composites containing fullerene.

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