A Direct Writing Approach for Organic Semiconductor Single‐Crystal Patterns with Unique Orientation

材料科学 有机半导体 成核 制作 半导体 Crystal(编程语言) 微尺度化学 丝带 光电子学 润湿 纳米技术 复合材料 计算机科学 医学 化学 替代医学 数学教育 有机化学 数学 病理 程序设计语言
作者
Shengnan Chen,Xiaoying Ma,Zheren Cai,Haoran Long,Xiaoyu Wang,Zheng Li,Zhiyuan Qu,Fengjiao Zhang,Yali Qiao,Yanlin Song
出处
期刊:Advanced Materials [Wiley]
卷期号:34 (17): e2200928-e2200928 被引量:36
标识
DOI:10.1002/adma.202200928
摘要

Organic semiconductor single-crystal (OSSC) patterns with precisely controlled orientation are of great significance to the integrated fabrication of devices with high and uniform performance. However, it is still challenging to achieve purely oriented OSSC patterns due to the complex nucleation and growth process of OSSCs. Here, a general direct writing approach is presented to readily obtain high-quality OSSC patterns with unique orientation. In specific, a direct writing method is demonstrated wherein the microscale meniscus is manipulated, which makes it possible to precisely control the nucleation and growth process of the OSSC because of its comparable size to the crystal nuclei. The resulting OSSC patterns are highly crystalline and purely oriented, in which each ribbon crystal shows a deviation angle of 33° to the printing direction. The mechanism of orientation purification is revealed experimentally and theoretically, and the results show that the TCL deformation caused by the difference in wettability and adhesive force, as well as the asymmetry of fluid concentration distribution, are the key factors leading to the selective deposition and unique orientation. Moreover, organic field-effect transistors (OFETs) and polarization-sensitive photodetectors are prepared based on the OSSC patterns with unique orientation, which exhibit higher device performance compared to the non-purely oriented crystal-based OFETs.
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