Physikalisches Institut, Westfälische Wilhelms-Universität, Wilhelm-Klemm-Str. 10, 48149, Münster, Germany.
Center for Nanotechnology, Heisenbergstr. 11, 48149, Münster, Germany.
Nat Commun. 2018 Jun 14;9(1):2339. doi: 10.1038/s41467-018-04665-z.
The ever-increasing demand for flexible electronics calls for the development of low-voltage and high-mobility organic thin-film transistors (OTFTs) that can be integrated into emerging display and labeling technologies. Polymer dielectrics with comprehensive and balanced dielectric properties (i.e., a good balance between their insulating characteristics and compatibility with organic semiconductors) are considered particularly important for this end. Here, we introduce a simple but highly efficient strategy to realize this target by using a new type of copolymer as dielectrics. Benefiting from both high chain packing density guaranteeing dielectric properties and surface polarity optimizing molecular packing of organic semiconductors, this rationally designed copolymer dielectric endows flexible OTFTs with high mobility (5.6 cm V s), low operating voltage (3 V) and outstanding stability. Further, their applicability in integrated circuits is verified. The excellent device performance shows exciting prospects of this molecular-scale engineered copolymer for the realization of plastic high-performance integrated electronics.
不断增长的对柔性电子产品的需求要求开发能够集成到新兴显示和标记技术中的低压和高迁移率有机薄膜晶体管(OTFT)。具有综合和平衡介电性能的聚合物电介质(即绝缘特性与其与有机半导体的兼容性之间的良好平衡)被认为对此非常重要。在这里,我们介绍了一种简单但非常有效的策略,通过使用新型共聚物作为电介质来实现这一目标。受益于高链堆积密度保证介电性能和表面极性优化有机半导体的分子堆积,这种合理设计的共聚物电介质赋予了柔性 OTFT 高迁移率(5.6 cm V s)、低工作电压(3 V)和出色的稳定性。此外,还验证了它们在集成电路中的适用性。优异的器件性能表明,这种分子级设计的共聚物在实现塑料高性能集成电子方面具有令人兴奋的前景。