School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332-0100, USA.
ACS Nano. 2013 Jun 25;7(6):5402-13. doi: 10.1021/nn401323f. Epub 2013 May 13.
We demonstrate that supramolecular assembly and subsequent enhancement of charge transport characteristics of conjugated polymers can be facilitated simply by adding small amounts of a more volatile poor solvent, which can hydrogen bond with the majority solvent. Addition of up to 2 vol % acetone to a precursor solution of poly(3-hexylthiophene) (P3HT) in chloroform leads to approximately a 4-fold increase in P3HT field-effect mobility. The improvement is associated with hydrogen bonding interactions between acetone and chloroform which decrease the evaporation rate of the mixed solvent. P3HT is less soluble in the binary solvent than in the more readily vaporized chloroform component, and this characteristic enables the supramolecular assembly of P3HT chains at the nanoscale. Two-dimensional molecular ordering of the polymer film was controlled by varying the quantity of poor solvent added to the precursor solution, and the correlation between field-effect mobility and molecular ordering was investigated. Hansen solubility parameters were used to systematically understand how the solvent mixture enhances the alignment and assembly of polymer chains and influences subsequent thin film properties. The value of the relative energy difference (RED) of the solvent with respect to P3HT increased from less than 1 to more than 1 during film formation, which indicates that the solvent characteristics are initially those of a good solvent but transform into those of a poor dissolution medium. A mechanistic illustration of the molecular ordering process during film formation is postulated.
我们证明,通过简单地添加少量挥发性较差的溶剂(其可与多数溶剂形成氢键),可以促进共轭聚合物的超分子组装并随后增强其电荷传输特性。在聚(3-己基噻吩)(P3HT)在氯仿中的前体溶液中添加高达 2 体积%的丙酮,可使 P3HT 的场效应迁移率提高约 4 倍。这种改善与丙酮和氯仿之间的氢键相互作用有关,这些相互作用降低了混合溶剂的蒸发速率。与更易蒸发的氯仿成分相比,P3HT 在二元溶剂中的溶解度较低,这种特性使得 P3HT 链能够在纳米尺度上进行超分子组装。通过改变添加到前体溶液中的不良溶剂的量来控制聚合物膜的二维分子有序性,并研究了场效应迁移率与分子有序性之间的相关性。Hansen 溶解度参数被用于系统地理解溶剂混合物如何增强聚合物链的取向和组装,并影响后续的薄膜性能。在薄膜形成过程中,溶剂相对于 P3HT 的相对能量差(RED)的值从小于 1 增加到大于 1,这表明溶剂的特性最初是良溶剂的特性,但转变为较差的溶解介质的特性。提出了一种在薄膜形成过程中分子有序化过程的机制说明。