Department of Material Science and Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 305-701, Korea.
ACS Appl Mater Interfaces. 2012 Jan;4(1):214-21. doi: 10.1021/am201274s. Epub 2011 Dec 28.
Polymer-based field-effect transistors are fabricated using the gas-assisted spray technique, and their performance is considerably improved when a solvent-assisted post-treatment method, solvent sprayed overlayer (SSO), is used. The SSO method is a unique treatment that can facilitate chain packing to increase crystallinity within the sprayed polymer layers, which inherently have a kinetically trapped amorphous chain morphology with lack of crystallinity due to rapid solvent evaporation. The device performance was drastically improved after SSO relative to conventional post-treatment, thermal annealing (TA). This occurred because SSO can rearrange the polymer chains into a dominantly edge-on crystal orientation, which is preferential for charge transport, whereas TA increases the crystallinity without rearrangement of the crystal orientation resulting in a complex of edge-on and face-on. The development of edge-on crystal domains after SSO within the active layers was responsible for the significant improvement in performance. The SSO is a simple and effective post-treatment method that validates the use of spray process and holds promise for use in other high-throughput processes for OFETs fabrication.
采用气助喷涂技术制备基于聚合物的场效应晶体管,当使用溶剂辅助后处理方法(溶剂喷涂覆盖层(SSO))时,其性能得到显著提高。SSO 方法是一种独特的处理方法,可促进链堆积,增加喷涂聚合物层内的结晶度,由于溶剂快速蒸发,喷涂聚合物层固有动力学捕获的无定形链形态,结晶度差。与传统后处理(热退火(TA))相比,SSO 后器件性能有显著提高。这是因为 SSO 可以将聚合物链重新排列成主要的边缘晶取向,这有利于电荷输运,而 TA 增加了结晶度,而不改变晶体取向,导致边缘取向和面取向的复合物。SSO 后活性层内边缘取向晶体畴的发展是性能显著提高的原因。SSO 是一种简单有效的后处理方法,验证了喷涂工艺的使用,并有望用于其他用于制造 OFET 的高通量工艺。