Boost Up Carrier Mobility for Ferroelectric Organic Transistor Memory via Buffering Interfacial Polarization Fluctuation

Ferroelectric organic field-effect transistors (Fe-OFETs) have been attractive for a variety of non-volatile memory device applications. One of the critical issues of Fe-OFETs is the improvement of carrier mobility in semiconducting channels. In this article, we propose a novel interfacial buffering...

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Veröffentlicht in:Scientific reports 2014-11, Vol.4 (1), p.7227-7227, Article 7227
Hauptverfasser: Sun, Huabin, Wang, Qijing, Li, Yun, Lin, Yen-Fu, Wang, Yu, Yin, Yao, Xu, Yong, Liu, Chuan, Tsukagoshi, Kazuhito, Pan, Lijia, Wang, Xizhang, Hu, Zheng, Shi, Yi
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Sprache:eng
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Zusammenfassung:Ferroelectric organic field-effect transistors (Fe-OFETs) have been attractive for a variety of non-volatile memory device applications. One of the critical issues of Fe-OFETs is the improvement of carrier mobility in semiconducting channels. In this article, we propose a novel interfacial buffering method that inserts an ultrathin poly(methyl methacrylate) (PMMA) between ferroelectric polymer and organic semiconductor layers. A high field-effect mobility (μ FET ) up to 4.6 cm 2 V −1 s −1 is obtained. Subsequently, the programming process in our Fe-OFETs is mainly dominated by the switching between two ferroelectric polarizations rather than by the mobility-determined charge accumulation at the channel. Thus, the “reading” and “programming” speeds are significantly improved. Investigations show that the polarization fluctuation at semiconductor/insulator interfaces, which affect the charge transport in conducting channels, can be suppressed effectively using our method.
ISSN:2045-2322
2045-2322
DOI:10.1038/srep07227