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- W2794139469 abstract "In2O3 nanowire electric-double-layer (EDL) transistors with in-plane gate gated by SiO2 solid-electrolyte are fabricated on transparent glass substrates. The gate voltage sweep rates can effectively modulate the threshold voltage (Vth) of nanowire device. Both depletion mode and enhancement mode are realized, and the Vth shift of the nanowire transistors is estimated to be 0.73V (without light). This phenomenon is due to increased adsorption of oxygen on the nanowire surface by the slower gate voltage sweep rates. Adsorbed oxygens capture electrons and cause a surface of nanowire channel was depleted. The operation voltage of transistor was 1.0 V, because the EDL gate dielectric can lead to high gate dielectric capacitance. These transparent in-plane gate nanowire transistors are promising for see-through nanoscale sensors." @default.
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- W2794139469 date "2018-01-01" @default.
- W2794139469 modified "2023-09-26" @default.
- W2794139469 title "Effect of gate bias sweep rate on the threshold voltage of in-plane gate nanowire transistor" @default.
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- W2794139469 doi "https://doi.org/10.1088/1757-899x/292/1/012059" @default.
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