Remarkably low flicker noise in solution-processed organic single crystal transistors

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Abstract

Low-frequency noise generated by a fluctuation of current is a key issue for integrating electronic elements into a high-density circuit. Investigation of the noise in organic field-effect transistors is now sharing the spotlight with development of printed integrated circuits. The recent improvement of field-effect mobility (up to 15 cm2 V−1 s−1) has allowed for organic integrated circuits with a relatively high-speed operation (~50 kHz). Therefore, an in-depth understanding of the noise feature will be indispensable to further improve the circuit stability and durability. Here we performed noise measurements in solution-processed organic single crystal transistors, and discovered that a low trap density-of-states due to the absence of structural disorder in combination with coherent band-like transport gives rise to an unprecedentedly low flicker noise. The excellent noise property in organic single crystals will allow their potential to be fully exploited for high-speed communication and sensing applications.

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Watanabe, S., Sugawara, H., Häusermann, R., Blülle, B., Yamamura, A., Okamoto, T., & Takeya, J. (2018). Remarkably low flicker noise in solution-processed organic single crystal transistors. Communications Physics, 1(1). https://doi.org/10.1038/s42005-018-0037-0

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