EventsThe 1st International Online Conference on Nanomaterials
Published
This submission belongs to the session D. Devices & Energy of the event The 1st International Online Conference on Nanomaterials
Published date
05 Sep, 2018
Citation
Francesco Rossella, Ionic liquid gating of semiconductor nanostructure-based devices, in Proceedings of The 1st International Online Conference on Nanomaterials, 1 September–15 September 2018, MDPI: Basel, Switzerland, doi: 10.3390/IOCN_2018-1-05499
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Ionic liquid gating of semiconductor nanostructure-based devices

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1. NEST, Scuola Normale Superiore and Istituto Nanoscienze-CNR
Abstract

The operation of an ionic liquid-gated field effect transistor based on a single InAs nanowire will be presented and discussed. The voltage-biased ionic liquid implements the electric-double-layer inducing the field effect in the semiconductor nanostructure, and this allows to achieve the full control over the nanowire transistor. The ionic liquid gate is up to 40 times more performing with respect to the back-gate. The temperature dependence of the resistance, measured for different doping levels, reveals a clear change in the behavior of the nanostructure from fully semiconducting to quasi-metallic. Perspectives of the use of liquid gating techniques to operate nanodevices based on III-V semiconductor nanostructures will be discussed. These include fundamental and applied studies such as carrier density induced phase-transitions to bioelectronics, light emission and detection at the nanoscale, bio-sensing.

Keywords
InAs nanowire
ionic liquid gating
metal-insulator transition
Manuscript
Poster
Rossella_ILgating.pdf
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