paper

Field-induced water electrolysis switches an oxide semiconductor from an insulator to a metal

arXiv:1011.3681 · doi:10.1038/ncomms1112

Abstract

Here we demonstrate that water-infiltrated nanoporous glass electrically switches an oxide semiconductor from an insulator to metal. We fabricated the field effect transistor structure on an oxide semiconductor, SrTiO3, using 100%-water-infiltrated nanoporous glass - amorphous 12CaO*7Al2O3 - as the gate insulator. For positive gate voltage, electron accumulation, water electrolysis and electrochemical reduction occur successively on the SrTiO3 surface at room temperature, leading to the formation of a thin (~3 nm) metal layer with an extremely high electron concentration of 10^15-10^16 cm^-2, which exhibits exotic thermoelectric behaviour.

21 pages, 12 figures

References in corpus (1)

Field-induced water electrolysis switches an oxide semiconductor from an insulator to a metal · wovepaper