Department of Physics, Ferdowsi University of Mashhad, Mashhad, Iran.
Phys Chem Chem Phys. 2019 Mar 20;21(12):6699-6711. doi: 10.1039/c8cp07141a.
Computational microscopy based on Martini coarse grained molecular dynamics (MD) simulations of a doped conducting polymer poly(3,4-ethylenedioxythiophene)polystyrene sulfonate (best known as PEDOT:PSS) was performed focussing on the formation of the granular structure and PEDOT crystallites, and the effect of pH on the material morphology. The PEDOT:PSS morphology is shown to be sensitive to the initial distribution of PEDOT and PSS in the solution, and the results of the modelling suggest that the experimentally observed granular structure of PEDOT:PSS can be only obtained if the PEDOT/PSS solution is in the dispersive state in the initial crystallization stages. Variation of the pH is demonstrated to strongly affect the morphology of PEDOT:PSS films, altering their structure between granular-type and homogeneous. It also affects the size of crystallites and the relative arrangement of PEDOT and PSS chains. It is shown that the crystallites in PEDOT:PSS are smaller than those in PEDOT with molecular counterions such as PEDOT:tosylate, which is consistent with the available experimental data. The predicted changes of the PEDOT:PSS morphology with variation of the pH can be tested experimentally, and the calculated atomistic picture of PEDOT:PSS films (not accessible by conventional experimental techniques) is instrumental for understanding the material structure and building realistic models of PEDOT:PSS morphology.
基于掺杂导电聚合物聚(3,4-亚乙基二氧噻吩)聚苯乙烯磺酸盐(俗称 PEDOT:PSS)的 Martini 粗粒分子动力学(MD)模拟的计算显微镜学被执行,重点关注颗粒结构和 PEDOT 晶须的形成,以及 pH 值对材料形态的影响。PEDOT:PSS 形态对 PEDOT 和 PSS 在溶液中的初始分布敏感,建模结果表明,如果 PEDOT/PSS 溶液在初始结晶阶段处于分散状态,则可以获得实验观察到的 PEDOT:PSS 颗粒状结构。pH 值的变化被证明强烈影响 PEDOT:PSS 薄膜的形态,在颗粒型和均匀型之间改变其结构。它还影响晶须的大小和 PEDOT 和 PSS 链的相对排列。结果表明,PEDOT:PSS 中的晶须比具有分子抗衡离子(如 PEDOT:tosylate)的 PEDOT 中的晶须小,这与现有实验数据一致。可以通过实验测试预测 PEDOT:PSS 形态随 pH 值变化的变化,并且计算得到的 PEDOT:PSS 薄膜的原子级图像(常规实验技术无法获得)对于理解材料结构和构建 PEDOT:PSS 形态的现实模型非常重要。