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Titanyl phthalocyanine ambipolar thin film transistors making use of carbon nanotube electrodes

机译:利用碳纳米管电极的钛酰酞菁双极性薄膜晶体管

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摘要

The capability of efficiently injecting charge carriers into organic films and finely tuning their morphology and structure is crucial to improve the performance of organic thin film transistors (OTFTs). In this work, we investigate OTFTs employing carbon nanotubes (CNTs) as the source-drain electrodes and, as the organic semiconductor, thin films of titanyl phthalocyanine (TiOPc) grown by supersonic molecular beam deposition (SuMBD). While CNT electrodes have shown an unprecedented ability to improve charge injection in OTFTs, SuMBD is an effective technique to tune film morphology and structure. Varying the substrate temperature during deposition, we were able to grow both amorphous (low substrate temperature) and polycrystalline (high substrate temperature) films of TiOPc. Regardless of the film morphology and structure, CNT electrodes led to superior charge injection and transport performance with respect to benchmark Au electrodes. Vacuum annealing of polycrystalline TiOPc films with CNT electrodes yielded ambipolar OTFTs.
机译:有效地将电荷载流子注入有机薄膜并精细调整其形态和结构的能力对于提高有机薄膜晶体管(OTFT)的性能至关重要。在这项工作中,我们研究了采用碳纳米管(CNTs)作为源极-漏极电极以及通过超音速分子束沉积(SuMBD)生长的钛氧基酞菁(TiOPc)薄膜作为有机半导体的OTFT。尽管CNT电极已显示出提高OTFT中电​​荷注入的空前能力,但SuMBD是调节膜形态和结构的有效技术。在沉积过程中改变衬底温度,我们能够生长TiOPc的非晶(低衬底温度)和多晶(高衬底温度)膜。不管膜的形态和结构如何,相对于基准Au电极,CNT电极均具有出色的电荷注入和传输性能。用CNT电极对多晶TiOPc薄膜进行真空退火,得到双极性OTFT。

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