Pan Guoxing, Hu Lin, Zhang Fapei, Chen Qianwang
Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, P. R. China.
Anhui Province Key Laboratory of Condensed Matter Physics at Extreme Conditions, High Magnetic Field Laboratory (HMFL), Chinese Academy of Sciences, Hefei 230031, P. R. China.
J Phys Chem Lett. 2021 Apr 15;12(14):3476-3484. doi: 10.1021/acs.jpclett.1c00385. Epub 2021 Apr 1.
The effective control of film morphology and molecular packing in the out-of-plane direction of semiconductor polymers plays a critical role in governing charge carrier transport in the direction perpendicular to the substrate. In this study, a highly out-of-plane alignment of the n-type polymer P(NDI2OD-T2) film has been successfully achieved by horizontal rotation in a high magnetic field (HR-HMF). The out-of-plane alignment of the P(NDI2OD-T2) film has showed a change from 72% face-on to 98.2% face-on lamellar texture as well as a 1.6-fold increase of the π-π stacking crystalline correlation length compared with that of as-cast polymer films without HR-HMF-induced alignment. Meanwhile, the film with near-perfect face-on molecular packing exhibited more than 18-fold enhancement of electron mobility compared to the unaligned film. The excellent electrical performance achieved with the HR-HMF process indicates its application potential for fabricating high-performance sandwich-type organic electronic devices, such as solar cells and light-emitting diodes.
有效控制半导体聚合物在垂直于衬底方向上的薄膜形态和分子堆积,对于控制电荷载流子在垂直于衬底方向上的传输起着关键作用。在本研究中,通过在高磁场中水平旋转(HR-HMF)成功实现了n型聚合物P(NDI2OD-T2)薄膜的高度垂直取向。与未经HR-HMF诱导取向的铸态聚合物薄膜相比,P(NDI2OD-T2)薄膜的垂直取向显示出从72%的面朝上到98.2%的面朝上的层状织构变化,以及π-π堆积晶体相关长度增加了1.6倍。同时,具有近乎完美面朝上分子堆积的薄膜与未取向薄膜相比,电子迁移率提高了18倍以上。HR-HMF工艺实现的优异电性能表明其在制造高性能三明治型有机电子器件(如太阳能电池和发光二极管)方面的应用潜力。