Zhang Xiujuan, Deng Wei, Jia Ruofei, Zhang Xiaohong, Jie Jiansheng
Institute of Functional Nano & Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Soochow University, Suzhou Jiangsu, 215123, P. R. China.
Small. 2019 Jul;15(27):e1900332. doi: 10.1002/smll.201900332. Epub 2019 Apr 16.
Development of high-performance organic electronic and optoelectronic devices relies on high-quality semiconducting crystals that have outstanding charge transport properties and long exciton diffusion length and lifetime. To achieve integrated device applications, it is a prerequisite to precisely locate the organic semiconductor crystals (OSCCs) to form a specifically patterned structure. Well-patterned OSCCs can not only reduce leakage current and cross-talk between neighboring devices, but also facilely integrate with other device elements and their corresponding interconnects. In this Review, general strategies for the patterning of OSCCs are summarized, and the advantages and limitations of different patterning methods are discussed. Discussion is focused on an advanced strategy for the high-resolution and wafer-scale patterning of OSCC by a surface microstructure-assisted patterning method. Furthermore, the recent progress on OSCC pattern-based integrated circuities is highlighted. Finally, the research challenges and directions of this young field are also presented.
高性能有机电子和光电器件的发展依赖于具有出色电荷传输特性、长激子扩散长度和寿命的高质量半导体晶体。为了实现集成器件应用,精确地定位有机半导体晶体(OSCC)以形成特定图案化结构是一个先决条件。图案良好的OSCC不仅可以降低相邻器件之间的漏电流和串扰,还能轻松地与其他器件元件及其相应的互连进行集成。在本综述中,总结了OSCC图案化的一般策略,并讨论了不同图案化方法的优缺点。讨论集中在一种通过表面微结构辅助图案化方法对OSCC进行高分辨率和晶圆级图案化的先进策略。此外,还强调了基于OSCC图案的集成电路的最新进展。最后,也介绍了这个新兴领域的研究挑战和方向。