论文标题

有机太阳能电池中晶体散装异质结的形成:相位模拟的见解

Formation of crystalline bulk heterojunctions in organic solar cells: insights from phase-field simulations

论文作者

Ronsin, Olivier, Harting, Jens

论文摘要

有机太阳能电池的性能在很大程度上取决于光活性层的大量异质结(BHJ)。由于物理过程,例如结晶和/或液体液相分离(LLP),因此该BHJ在干燥过程中形成。但是,过程结构关系仍然不足以理解。在这项工作中,最近开发的耦合相场流体力学框架用于模拟干燥时的BHJ形成。这首先允许在一个相干的理论框架内研究所有相关物理过程(蒸发,晶体成核和生长,液体解散,组成依赖的动力学特性)之间的相互作用。提供了模型系统P3HT-PCBM的仿真。与先前报道的干燥结构的原位表征的比较非常令人信服:形态形成途径,结晶动力学和最终形态与实验结果一致。最终的BHJ形态是纯晶体供体和受体阶段,纯和混合无定形结构域的微妙混合物,取决于过程参数和材料特性。这种方法的预期好处是确定墨水配方和处理条件的物理设计规则,以优化细胞性能。它可以将来应用于最近的有机材料系统。

The performance of organic solar cells strongly depends on the bulk heterojunction (BHJ) morphology of the photoactive layer. This BHJ forms during the drying of the wet-deposited solution, because of physical processes such as crystallization and/or liquid liquid phase separation (LLPS). However, the process-structure relationship remains insufficiently understood. In this work, a recently developed, coupled phase field fluid mechanics framework is used to simulate the BHJ formation upon drying. For the first time, this allows to investigate the interplay between all the relevant physical processes (evaporation, crystal nucleation and growth, liquid demixing, composition-dependent kinetic properties), within a single coherent theoretical framework. Simulations for the model system P3HT-PCBM are presented. The comparison with previously reported in-situ characterization of the drying structure is very convincing: the morphology formation pathways, crystallization kinetics, and final morphology are in line with experimental results. The final BHJ morphology is a subtle mixture of pure crystalline donor and acceptor phases, pure and mixed amorphous domains, which depends on the process parameters and material properties. The expected benefit of such an approach is to identify physical design rules for ink formulation and processing conditions to optimize the cell performance. It could be applied to recent organic material systems in the future.

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